xref: /openbmc/linux/net/vmw_vsock/af_vsock.c (revision 380feae0)
1d021c344SAndy King /*
2d021c344SAndy King  * VMware vSockets Driver
3d021c344SAndy King  *
4d021c344SAndy King  * Copyright (C) 2007-2013 VMware, Inc. All rights reserved.
5d021c344SAndy King  *
6d021c344SAndy King  * This program is free software; you can redistribute it and/or modify it
7d021c344SAndy King  * under the terms of the GNU General Public License as published by the Free
8d021c344SAndy King  * Software Foundation version 2 and no later version.
9d021c344SAndy King  *
10d021c344SAndy King  * This program is distributed in the hope that it will be useful, but WITHOUT
11d021c344SAndy King  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
12d021c344SAndy King  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
13d021c344SAndy King  * more details.
14d021c344SAndy King  */
15d021c344SAndy King 
16d021c344SAndy King /* Implementation notes:
17d021c344SAndy King  *
18d021c344SAndy King  * - There are two kinds of sockets: those created by user action (such as
19d021c344SAndy King  * calling socket(2)) and those created by incoming connection request packets.
20d021c344SAndy King  *
21d021c344SAndy King  * - There are two "global" tables, one for bound sockets (sockets that have
22d021c344SAndy King  * specified an address that they are responsible for) and one for connected
23d021c344SAndy King  * sockets (sockets that have established a connection with another socket).
24d021c344SAndy King  * These tables are "global" in that all sockets on the system are placed
25d021c344SAndy King  * within them. - Note, though, that the bound table contains an extra entry
26d021c344SAndy King  * for a list of unbound sockets and SOCK_DGRAM sockets will always remain in
27d021c344SAndy King  * that list. The bound table is used solely for lookup of sockets when packets
28d021c344SAndy King  * are received and that's not necessary for SOCK_DGRAM sockets since we create
29d021c344SAndy King  * a datagram handle for each and need not perform a lookup.  Keeping SOCK_DGRAM
30d021c344SAndy King  * sockets out of the bound hash buckets will reduce the chance of collisions
31d021c344SAndy King  * when looking for SOCK_STREAM sockets and prevents us from having to check the
32d021c344SAndy King  * socket type in the hash table lookups.
33d021c344SAndy King  *
34d021c344SAndy King  * - Sockets created by user action will either be "client" sockets that
35d021c344SAndy King  * initiate a connection or "server" sockets that listen for connections; we do
36d021c344SAndy King  * not support simultaneous connects (two "client" sockets connecting).
37d021c344SAndy King  *
38d021c344SAndy King  * - "Server" sockets are referred to as listener sockets throughout this
39ea3803c1SStefan Hajnoczi  * implementation because they are in the VSOCK_SS_LISTEN state.  When a
40ea3803c1SStefan Hajnoczi  * connection request is received (the second kind of socket mentioned above),
41ea3803c1SStefan Hajnoczi  * we create a new socket and refer to it as a pending socket.  These pending
42ea3803c1SStefan Hajnoczi  * sockets are placed on the pending connection list of the listener socket.
43ea3803c1SStefan Hajnoczi  * When future packets are received for the address the listener socket is
44ea3803c1SStefan Hajnoczi  * bound to, we check if the source of the packet is from one that has an
45ea3803c1SStefan Hajnoczi  * existing pending connection.  If it does, we process the packet for the
46ea3803c1SStefan Hajnoczi  * pending socket.  When that socket reaches the connected state, it is removed
47ea3803c1SStefan Hajnoczi  * from the listener socket's pending list and enqueued in the listener
48ea3803c1SStefan Hajnoczi  * socket's accept queue.  Callers of accept(2) will accept connected sockets
49ea3803c1SStefan Hajnoczi  * from the listener socket's accept queue.  If the socket cannot be accepted
50ea3803c1SStefan Hajnoczi  * for some reason then it is marked rejected.  Once the connection is
51ea3803c1SStefan Hajnoczi  * accepted, it is owned by the user process and the responsibility for cleanup
52ea3803c1SStefan Hajnoczi  * falls with that user process.
53d021c344SAndy King  *
54d021c344SAndy King  * - It is possible that these pending sockets will never reach the connected
55d021c344SAndy King  * state; in fact, we may never receive another packet after the connection
56d021c344SAndy King  * request.  Because of this, we must schedule a cleanup function to run in the
57d021c344SAndy King  * future, after some amount of time passes where a connection should have been
58d021c344SAndy King  * established.  This function ensures that the socket is off all lists so it
59d021c344SAndy King  * cannot be retrieved, then drops all references to the socket so it is cleaned
60d021c344SAndy King  * up (sock_put() -> sk_free() -> our sk_destruct implementation).  Note this
61d021c344SAndy King  * function will also cleanup rejected sockets, those that reach the connected
62d021c344SAndy King  * state but leave it before they have been accepted.
63d021c344SAndy King  *
644192f672SStefan Hajnoczi  * - Lock ordering for pending or accept queue sockets is:
654192f672SStefan Hajnoczi  *
664192f672SStefan Hajnoczi  *     lock_sock(listener);
674192f672SStefan Hajnoczi  *     lock_sock_nested(pending, SINGLE_DEPTH_NESTING);
684192f672SStefan Hajnoczi  *
694192f672SStefan Hajnoczi  * Using explicit nested locking keeps lockdep happy since normally only one
704192f672SStefan Hajnoczi  * lock of a given class may be taken at a time.
714192f672SStefan Hajnoczi  *
72d021c344SAndy King  * - Sockets created by user action will be cleaned up when the user process
73d021c344SAndy King  * calls close(2), causing our release implementation to be called. Our release
74d021c344SAndy King  * implementation will perform some cleanup then drop the last reference so our
75d021c344SAndy King  * sk_destruct implementation is invoked.  Our sk_destruct implementation will
76d021c344SAndy King  * perform additional cleanup that's common for both types of sockets.
77d021c344SAndy King  *
78d021c344SAndy King  * - A socket's reference count is what ensures that the structure won't be
79d021c344SAndy King  * freed.  Each entry in a list (such as the "global" bound and connected tables
80d021c344SAndy King  * and the listener socket's pending list and connected queue) ensures a
81d021c344SAndy King  * reference.  When we defer work until process context and pass a socket as our
82d021c344SAndy King  * argument, we must ensure the reference count is increased to ensure the
83d021c344SAndy King  * socket isn't freed before the function is run; the deferred function will
84d021c344SAndy King  * then drop the reference.
85d021c344SAndy King  */
86d021c344SAndy King 
87d021c344SAndy King #include <linux/types.h>
88d021c344SAndy King #include <linux/bitops.h>
89d021c344SAndy King #include <linux/cred.h>
90d021c344SAndy King #include <linux/init.h>
91d021c344SAndy King #include <linux/io.h>
92d021c344SAndy King #include <linux/kernel.h>
93174cd4b1SIngo Molnar #include <linux/sched/signal.h>
94d021c344SAndy King #include <linux/kmod.h>
95d021c344SAndy King #include <linux/list.h>
96d021c344SAndy King #include <linux/miscdevice.h>
97d021c344SAndy King #include <linux/module.h>
98d021c344SAndy King #include <linux/mutex.h>
99d021c344SAndy King #include <linux/net.h>
100d021c344SAndy King #include <linux/poll.h>
101d021c344SAndy King #include <linux/skbuff.h>
102d021c344SAndy King #include <linux/smp.h>
103d021c344SAndy King #include <linux/socket.h>
104d021c344SAndy King #include <linux/stddef.h>
105d021c344SAndy King #include <linux/unistd.h>
106d021c344SAndy King #include <linux/wait.h>
107d021c344SAndy King #include <linux/workqueue.h>
108d021c344SAndy King #include <net/sock.h>
10982a54d0eSAsias He #include <net/af_vsock.h>
110d021c344SAndy King 
111d021c344SAndy King static int __vsock_bind(struct sock *sk, struct sockaddr_vm *addr);
112d021c344SAndy King static void vsock_sk_destruct(struct sock *sk);
113d021c344SAndy King static int vsock_queue_rcv_skb(struct sock *sk, struct sk_buff *skb);
114d021c344SAndy King 
115d021c344SAndy King /* Protocol family. */
116d021c344SAndy King static struct proto vsock_proto = {
117d021c344SAndy King 	.name = "AF_VSOCK",
118d021c344SAndy King 	.owner = THIS_MODULE,
119d021c344SAndy King 	.obj_size = sizeof(struct vsock_sock),
120d021c344SAndy King };
121d021c344SAndy King 
122d021c344SAndy King /* The default peer timeout indicates how long we will wait for a peer response
123d021c344SAndy King  * to a control message.
124d021c344SAndy King  */
125d021c344SAndy King #define VSOCK_DEFAULT_CONNECT_TIMEOUT (2 * HZ)
126d021c344SAndy King 
127d021c344SAndy King static const struct vsock_transport *transport;
128d021c344SAndy King static DEFINE_MUTEX(vsock_register_mutex);
129d021c344SAndy King 
130d021c344SAndy King /**** EXPORTS ****/
131d021c344SAndy King 
132d021c344SAndy King /* Get the ID of the local context.  This is transport dependent. */
133d021c344SAndy King 
134d021c344SAndy King int vm_sockets_get_local_cid(void)
135d021c344SAndy King {
136d021c344SAndy King 	return transport->get_local_cid();
137d021c344SAndy King }
138d021c344SAndy King EXPORT_SYMBOL_GPL(vm_sockets_get_local_cid);
139d021c344SAndy King 
140d021c344SAndy King /**** UTILS ****/
141d021c344SAndy King 
142d021c344SAndy King /* Each bound VSocket is stored in the bind hash table and each connected
143d021c344SAndy King  * VSocket is stored in the connected hash table.
144d021c344SAndy King  *
145d021c344SAndy King  * Unbound sockets are all put on the same list attached to the end of the hash
146d021c344SAndy King  * table (vsock_unbound_sockets).  Bound sockets are added to the hash table in
147d021c344SAndy King  * the bucket that their local address hashes to (vsock_bound_sockets(addr)
148d021c344SAndy King  * represents the list that addr hashes to).
149d021c344SAndy King  *
150d021c344SAndy King  * Specifically, we initialize the vsock_bind_table array to a size of
151d021c344SAndy King  * VSOCK_HASH_SIZE + 1 so that vsock_bind_table[0] through
152d021c344SAndy King  * vsock_bind_table[VSOCK_HASH_SIZE - 1] are for bound sockets and
153d021c344SAndy King  * vsock_bind_table[VSOCK_HASH_SIZE] is for unbound sockets.  The hash function
154a49dd9dcSAsias He  * mods with VSOCK_HASH_SIZE to ensure this.
155d021c344SAndy King  */
156d021c344SAndy King #define VSOCK_HASH_SIZE         251
157d021c344SAndy King #define MAX_PORT_RETRIES        24
158d021c344SAndy King 
159a49dd9dcSAsias He #define VSOCK_HASH(addr)        ((addr)->svm_port % VSOCK_HASH_SIZE)
160d021c344SAndy King #define vsock_bound_sockets(addr) (&vsock_bind_table[VSOCK_HASH(addr)])
161d021c344SAndy King #define vsock_unbound_sockets     (&vsock_bind_table[VSOCK_HASH_SIZE])
162d021c344SAndy King 
163d021c344SAndy King /* XXX This can probably be implemented in a better way. */
164d021c344SAndy King #define VSOCK_CONN_HASH(src, dst)				\
165a49dd9dcSAsias He 	(((src)->svm_cid ^ (dst)->svm_port) % VSOCK_HASH_SIZE)
166d021c344SAndy King #define vsock_connected_sockets(src, dst)		\
167d021c344SAndy King 	(&vsock_connected_table[VSOCK_CONN_HASH(src, dst)])
168d021c344SAndy King #define vsock_connected_sockets_vsk(vsk)				\
169d021c344SAndy King 	vsock_connected_sockets(&(vsk)->remote_addr, &(vsk)->local_addr)
170d021c344SAndy King 
171d021c344SAndy King static struct list_head vsock_bind_table[VSOCK_HASH_SIZE + 1];
172d021c344SAndy King static struct list_head vsock_connected_table[VSOCK_HASH_SIZE];
173d021c344SAndy King static DEFINE_SPINLOCK(vsock_table_lock);
174d021c344SAndy King 
175b3a6dfe8SAsias He /* Autobind this socket to the local address if necessary. */
176b3a6dfe8SAsias He static int vsock_auto_bind(struct vsock_sock *vsk)
177b3a6dfe8SAsias He {
178b3a6dfe8SAsias He 	struct sock *sk = sk_vsock(vsk);
179b3a6dfe8SAsias He 	struct sockaddr_vm local_addr;
180b3a6dfe8SAsias He 
181b3a6dfe8SAsias He 	if (vsock_addr_bound(&vsk->local_addr))
182b3a6dfe8SAsias He 		return 0;
183b3a6dfe8SAsias He 	vsock_addr_init(&local_addr, VMADDR_CID_ANY, VMADDR_PORT_ANY);
184b3a6dfe8SAsias He 	return __vsock_bind(sk, &local_addr);
185b3a6dfe8SAsias He }
186b3a6dfe8SAsias He 
18722ee3b57SGeert Uytterhoeven static void vsock_init_tables(void)
188d021c344SAndy King {
189d021c344SAndy King 	int i;
190d021c344SAndy King 
191d021c344SAndy King 	for (i = 0; i < ARRAY_SIZE(vsock_bind_table); i++)
192d021c344SAndy King 		INIT_LIST_HEAD(&vsock_bind_table[i]);
193d021c344SAndy King 
194d021c344SAndy King 	for (i = 0; i < ARRAY_SIZE(vsock_connected_table); i++)
195d021c344SAndy King 		INIT_LIST_HEAD(&vsock_connected_table[i]);
196d021c344SAndy King }
197d021c344SAndy King 
198d021c344SAndy King static void __vsock_insert_bound(struct list_head *list,
199d021c344SAndy King 				 struct vsock_sock *vsk)
200d021c344SAndy King {
201d021c344SAndy King 	sock_hold(&vsk->sk);
202d021c344SAndy King 	list_add(&vsk->bound_table, list);
203d021c344SAndy King }
204d021c344SAndy King 
205d021c344SAndy King static void __vsock_insert_connected(struct list_head *list,
206d021c344SAndy King 				     struct vsock_sock *vsk)
207d021c344SAndy King {
208d021c344SAndy King 	sock_hold(&vsk->sk);
209d021c344SAndy King 	list_add(&vsk->connected_table, list);
210d021c344SAndy King }
211d021c344SAndy King 
212d021c344SAndy King static void __vsock_remove_bound(struct vsock_sock *vsk)
213d021c344SAndy King {
214d021c344SAndy King 	list_del_init(&vsk->bound_table);
215d021c344SAndy King 	sock_put(&vsk->sk);
216d021c344SAndy King }
217d021c344SAndy King 
218d021c344SAndy King static void __vsock_remove_connected(struct vsock_sock *vsk)
219d021c344SAndy King {
220d021c344SAndy King 	list_del_init(&vsk->connected_table);
221d021c344SAndy King 	sock_put(&vsk->sk);
222d021c344SAndy King }
223d021c344SAndy King 
224d021c344SAndy King static struct sock *__vsock_find_bound_socket(struct sockaddr_vm *addr)
225d021c344SAndy King {
226d021c344SAndy King 	struct vsock_sock *vsk;
227d021c344SAndy King 
228d021c344SAndy King 	list_for_each_entry(vsk, vsock_bound_sockets(addr), bound_table)
229990454b5SReilly Grant 		if (addr->svm_port == vsk->local_addr.svm_port)
230d021c344SAndy King 			return sk_vsock(vsk);
231d021c344SAndy King 
232d021c344SAndy King 	return NULL;
233d021c344SAndy King }
234d021c344SAndy King 
235d021c344SAndy King static struct sock *__vsock_find_connected_socket(struct sockaddr_vm *src,
236d021c344SAndy King 						  struct sockaddr_vm *dst)
237d021c344SAndy King {
238d021c344SAndy King 	struct vsock_sock *vsk;
239d021c344SAndy King 
240d021c344SAndy King 	list_for_each_entry(vsk, vsock_connected_sockets(src, dst),
241d021c344SAndy King 			    connected_table) {
242990454b5SReilly Grant 		if (vsock_addr_equals_addr(src, &vsk->remote_addr) &&
243990454b5SReilly Grant 		    dst->svm_port == vsk->local_addr.svm_port) {
244d021c344SAndy King 			return sk_vsock(vsk);
245d021c344SAndy King 		}
246d021c344SAndy King 	}
247d021c344SAndy King 
248d021c344SAndy King 	return NULL;
249d021c344SAndy King }
250d021c344SAndy King 
251d021c344SAndy King static bool __vsock_in_bound_table(struct vsock_sock *vsk)
252d021c344SAndy King {
253d021c344SAndy King 	return !list_empty(&vsk->bound_table);
254d021c344SAndy King }
255d021c344SAndy King 
256d021c344SAndy King static bool __vsock_in_connected_table(struct vsock_sock *vsk)
257d021c344SAndy King {
258d021c344SAndy King 	return !list_empty(&vsk->connected_table);
259d021c344SAndy King }
260d021c344SAndy King 
261d021c344SAndy King static void vsock_insert_unbound(struct vsock_sock *vsk)
262d021c344SAndy King {
263d021c344SAndy King 	spin_lock_bh(&vsock_table_lock);
264d021c344SAndy King 	__vsock_insert_bound(vsock_unbound_sockets, vsk);
265d021c344SAndy King 	spin_unlock_bh(&vsock_table_lock);
266d021c344SAndy King }
267d021c344SAndy King 
268d021c344SAndy King void vsock_insert_connected(struct vsock_sock *vsk)
269d021c344SAndy King {
270d021c344SAndy King 	struct list_head *list = vsock_connected_sockets(
271d021c344SAndy King 		&vsk->remote_addr, &vsk->local_addr);
272d021c344SAndy King 
273d021c344SAndy King 	spin_lock_bh(&vsock_table_lock);
274d021c344SAndy King 	__vsock_insert_connected(list, vsk);
275d021c344SAndy King 	spin_unlock_bh(&vsock_table_lock);
276d021c344SAndy King }
277d021c344SAndy King EXPORT_SYMBOL_GPL(vsock_insert_connected);
278d021c344SAndy King 
279d021c344SAndy King void vsock_remove_bound(struct vsock_sock *vsk)
280d021c344SAndy King {
281d021c344SAndy King 	spin_lock_bh(&vsock_table_lock);
282d021c344SAndy King 	__vsock_remove_bound(vsk);
283d021c344SAndy King 	spin_unlock_bh(&vsock_table_lock);
284d021c344SAndy King }
285d021c344SAndy King EXPORT_SYMBOL_GPL(vsock_remove_bound);
286d021c344SAndy King 
287d021c344SAndy King void vsock_remove_connected(struct vsock_sock *vsk)
288d021c344SAndy King {
289d021c344SAndy King 	spin_lock_bh(&vsock_table_lock);
290d021c344SAndy King 	__vsock_remove_connected(vsk);
291d021c344SAndy King 	spin_unlock_bh(&vsock_table_lock);
292d021c344SAndy King }
293d021c344SAndy King EXPORT_SYMBOL_GPL(vsock_remove_connected);
294d021c344SAndy King 
295d021c344SAndy King struct sock *vsock_find_bound_socket(struct sockaddr_vm *addr)
296d021c344SAndy King {
297d021c344SAndy King 	struct sock *sk;
298d021c344SAndy King 
299d021c344SAndy King 	spin_lock_bh(&vsock_table_lock);
300d021c344SAndy King 	sk = __vsock_find_bound_socket(addr);
301d021c344SAndy King 	if (sk)
302d021c344SAndy King 		sock_hold(sk);
303d021c344SAndy King 
304d021c344SAndy King 	spin_unlock_bh(&vsock_table_lock);
305d021c344SAndy King 
306d021c344SAndy King 	return sk;
307d021c344SAndy King }
308d021c344SAndy King EXPORT_SYMBOL_GPL(vsock_find_bound_socket);
309d021c344SAndy King 
310d021c344SAndy King struct sock *vsock_find_connected_socket(struct sockaddr_vm *src,
311d021c344SAndy King 					 struct sockaddr_vm *dst)
312d021c344SAndy King {
313d021c344SAndy King 	struct sock *sk;
314d021c344SAndy King 
315d021c344SAndy King 	spin_lock_bh(&vsock_table_lock);
316d021c344SAndy King 	sk = __vsock_find_connected_socket(src, dst);
317d021c344SAndy King 	if (sk)
318d021c344SAndy King 		sock_hold(sk);
319d021c344SAndy King 
320d021c344SAndy King 	spin_unlock_bh(&vsock_table_lock);
321d021c344SAndy King 
322d021c344SAndy King 	return sk;
323d021c344SAndy King }
324d021c344SAndy King EXPORT_SYMBOL_GPL(vsock_find_connected_socket);
325d021c344SAndy King 
326d021c344SAndy King static bool vsock_in_bound_table(struct vsock_sock *vsk)
327d021c344SAndy King {
328d021c344SAndy King 	bool ret;
329d021c344SAndy King 
330d021c344SAndy King 	spin_lock_bh(&vsock_table_lock);
331d021c344SAndy King 	ret = __vsock_in_bound_table(vsk);
332d021c344SAndy King 	spin_unlock_bh(&vsock_table_lock);
333d021c344SAndy King 
334d021c344SAndy King 	return ret;
335d021c344SAndy King }
336d021c344SAndy King 
337d021c344SAndy King static bool vsock_in_connected_table(struct vsock_sock *vsk)
338d021c344SAndy King {
339d021c344SAndy King 	bool ret;
340d021c344SAndy King 
341d021c344SAndy King 	spin_lock_bh(&vsock_table_lock);
342d021c344SAndy King 	ret = __vsock_in_connected_table(vsk);
343d021c344SAndy King 	spin_unlock_bh(&vsock_table_lock);
344d021c344SAndy King 
345d021c344SAndy King 	return ret;
346d021c344SAndy King }
347d021c344SAndy King 
3486773b7dcSStefan Hajnoczi void vsock_remove_sock(struct vsock_sock *vsk)
3496773b7dcSStefan Hajnoczi {
3506773b7dcSStefan Hajnoczi 	if (vsock_in_bound_table(vsk))
3516773b7dcSStefan Hajnoczi 		vsock_remove_bound(vsk);
3526773b7dcSStefan Hajnoczi 
3536773b7dcSStefan Hajnoczi 	if (vsock_in_connected_table(vsk))
3546773b7dcSStefan Hajnoczi 		vsock_remove_connected(vsk);
3556773b7dcSStefan Hajnoczi }
3566773b7dcSStefan Hajnoczi EXPORT_SYMBOL_GPL(vsock_remove_sock);
3576773b7dcSStefan Hajnoczi 
358d021c344SAndy King void vsock_for_each_connected_socket(void (*fn)(struct sock *sk))
359d021c344SAndy King {
360d021c344SAndy King 	int i;
361d021c344SAndy King 
362d021c344SAndy King 	spin_lock_bh(&vsock_table_lock);
363d021c344SAndy King 
364d021c344SAndy King 	for (i = 0; i < ARRAY_SIZE(vsock_connected_table); i++) {
365d021c344SAndy King 		struct vsock_sock *vsk;
366d021c344SAndy King 		list_for_each_entry(vsk, &vsock_connected_table[i],
367d9af2d67SJulia Lawall 				    connected_table)
368d021c344SAndy King 			fn(sk_vsock(vsk));
369d021c344SAndy King 	}
370d021c344SAndy King 
371d021c344SAndy King 	spin_unlock_bh(&vsock_table_lock);
372d021c344SAndy King }
373d021c344SAndy King EXPORT_SYMBOL_GPL(vsock_for_each_connected_socket);
374d021c344SAndy King 
375d021c344SAndy King void vsock_add_pending(struct sock *listener, struct sock *pending)
376d021c344SAndy King {
377d021c344SAndy King 	struct vsock_sock *vlistener;
378d021c344SAndy King 	struct vsock_sock *vpending;
379d021c344SAndy King 
380d021c344SAndy King 	vlistener = vsock_sk(listener);
381d021c344SAndy King 	vpending = vsock_sk(pending);
382d021c344SAndy King 
383d021c344SAndy King 	sock_hold(pending);
384d021c344SAndy King 	sock_hold(listener);
385d021c344SAndy King 	list_add_tail(&vpending->pending_links, &vlistener->pending_links);
386d021c344SAndy King }
387d021c344SAndy King EXPORT_SYMBOL_GPL(vsock_add_pending);
388d021c344SAndy King 
389d021c344SAndy King void vsock_remove_pending(struct sock *listener, struct sock *pending)
390d021c344SAndy King {
391d021c344SAndy King 	struct vsock_sock *vpending = vsock_sk(pending);
392d021c344SAndy King 
393d021c344SAndy King 	list_del_init(&vpending->pending_links);
394d021c344SAndy King 	sock_put(listener);
395d021c344SAndy King 	sock_put(pending);
396d021c344SAndy King }
397d021c344SAndy King EXPORT_SYMBOL_GPL(vsock_remove_pending);
398d021c344SAndy King 
399d021c344SAndy King void vsock_enqueue_accept(struct sock *listener, struct sock *connected)
400d021c344SAndy King {
401d021c344SAndy King 	struct vsock_sock *vlistener;
402d021c344SAndy King 	struct vsock_sock *vconnected;
403d021c344SAndy King 
404d021c344SAndy King 	vlistener = vsock_sk(listener);
405d021c344SAndy King 	vconnected = vsock_sk(connected);
406d021c344SAndy King 
407d021c344SAndy King 	sock_hold(connected);
408d021c344SAndy King 	sock_hold(listener);
409d021c344SAndy King 	list_add_tail(&vconnected->accept_queue, &vlistener->accept_queue);
410d021c344SAndy King }
411d021c344SAndy King EXPORT_SYMBOL_GPL(vsock_enqueue_accept);
412d021c344SAndy King 
413d021c344SAndy King static struct sock *vsock_dequeue_accept(struct sock *listener)
414d021c344SAndy King {
415d021c344SAndy King 	struct vsock_sock *vlistener;
416d021c344SAndy King 	struct vsock_sock *vconnected;
417d021c344SAndy King 
418d021c344SAndy King 	vlistener = vsock_sk(listener);
419d021c344SAndy King 
420d021c344SAndy King 	if (list_empty(&vlistener->accept_queue))
421d021c344SAndy King 		return NULL;
422d021c344SAndy King 
423d021c344SAndy King 	vconnected = list_entry(vlistener->accept_queue.next,
424d021c344SAndy King 				struct vsock_sock, accept_queue);
425d021c344SAndy King 
426d021c344SAndy King 	list_del_init(&vconnected->accept_queue);
427d021c344SAndy King 	sock_put(listener);
428d021c344SAndy King 	/* The caller will need a reference on the connected socket so we let
429d021c344SAndy King 	 * it call sock_put().
430d021c344SAndy King 	 */
431d021c344SAndy King 
432d021c344SAndy King 	return sk_vsock(vconnected);
433d021c344SAndy King }
434d021c344SAndy King 
435d021c344SAndy King static bool vsock_is_accept_queue_empty(struct sock *sk)
436d021c344SAndy King {
437d021c344SAndy King 	struct vsock_sock *vsk = vsock_sk(sk);
438d021c344SAndy King 	return list_empty(&vsk->accept_queue);
439d021c344SAndy King }
440d021c344SAndy King 
441d021c344SAndy King static bool vsock_is_pending(struct sock *sk)
442d021c344SAndy King {
443d021c344SAndy King 	struct vsock_sock *vsk = vsock_sk(sk);
444d021c344SAndy King 	return !list_empty(&vsk->pending_links);
445d021c344SAndy King }
446d021c344SAndy King 
447d021c344SAndy King static int vsock_send_shutdown(struct sock *sk, int mode)
448d021c344SAndy King {
449d021c344SAndy King 	return transport->shutdown(vsock_sk(sk), mode);
450d021c344SAndy King }
451d021c344SAndy King 
452d021c344SAndy King void vsock_pending_work(struct work_struct *work)
453d021c344SAndy King {
454d021c344SAndy King 	struct sock *sk;
455d021c344SAndy King 	struct sock *listener;
456d021c344SAndy King 	struct vsock_sock *vsk;
457d021c344SAndy King 	bool cleanup;
458d021c344SAndy King 
459d021c344SAndy King 	vsk = container_of(work, struct vsock_sock, dwork.work);
460d021c344SAndy King 	sk = sk_vsock(vsk);
461d021c344SAndy King 	listener = vsk->listener;
462d021c344SAndy King 	cleanup = true;
463d021c344SAndy King 
464d021c344SAndy King 	lock_sock(listener);
4654192f672SStefan Hajnoczi 	lock_sock_nested(sk, SINGLE_DEPTH_NESTING);
466d021c344SAndy King 
467d021c344SAndy King 	if (vsock_is_pending(sk)) {
468d021c344SAndy King 		vsock_remove_pending(listener, sk);
4691190cfdbSJorgen Hansen 
4701190cfdbSJorgen Hansen 		listener->sk_ack_backlog--;
471d021c344SAndy King 	} else if (!vsk->rejected) {
472d021c344SAndy King 		/* We are not on the pending list and accept() did not reject
473d021c344SAndy King 		 * us, so we must have been accepted by our user process.  We
474d021c344SAndy King 		 * just need to drop our references to the sockets and be on
475d021c344SAndy King 		 * our way.
476d021c344SAndy King 		 */
477d021c344SAndy King 		cleanup = false;
478d021c344SAndy King 		goto out;
479d021c344SAndy King 	}
480d021c344SAndy King 
481d021c344SAndy King 	/* We need to remove ourself from the global connected sockets list so
482d021c344SAndy King 	 * incoming packets can't find this socket, and to reduce the reference
483d021c344SAndy King 	 * count.
484d021c344SAndy King 	 */
485d021c344SAndy King 	if (vsock_in_connected_table(vsk))
486d021c344SAndy King 		vsock_remove_connected(vsk);
487d021c344SAndy King 
488d021c344SAndy King 	sk->sk_state = SS_FREE;
489d021c344SAndy King 
490d021c344SAndy King out:
491d021c344SAndy King 	release_sock(sk);
492d021c344SAndy King 	release_sock(listener);
493d021c344SAndy King 	if (cleanup)
494d021c344SAndy King 		sock_put(sk);
495d021c344SAndy King 
496d021c344SAndy King 	sock_put(sk);
497d021c344SAndy King 	sock_put(listener);
498d021c344SAndy King }
499d021c344SAndy King EXPORT_SYMBOL_GPL(vsock_pending_work);
500d021c344SAndy King 
501d021c344SAndy King /**** SOCKET OPERATIONS ****/
502d021c344SAndy King 
503d021c344SAndy King static int __vsock_bind_stream(struct vsock_sock *vsk,
504d021c344SAndy King 			       struct sockaddr_vm *addr)
505d021c344SAndy King {
506d021c344SAndy King 	static u32 port = LAST_RESERVED_PORT + 1;
507d021c344SAndy King 	struct sockaddr_vm new_addr;
508d021c344SAndy King 
509d021c344SAndy King 	vsock_addr_init(&new_addr, addr->svm_cid, addr->svm_port);
510d021c344SAndy King 
511d021c344SAndy King 	if (addr->svm_port == VMADDR_PORT_ANY) {
512d021c344SAndy King 		bool found = false;
513d021c344SAndy King 		unsigned int i;
514d021c344SAndy King 
515d021c344SAndy King 		for (i = 0; i < MAX_PORT_RETRIES; i++) {
516d021c344SAndy King 			if (port <= LAST_RESERVED_PORT)
517d021c344SAndy King 				port = LAST_RESERVED_PORT + 1;
518d021c344SAndy King 
519d021c344SAndy King 			new_addr.svm_port = port++;
520d021c344SAndy King 
521d021c344SAndy King 			if (!__vsock_find_bound_socket(&new_addr)) {
522d021c344SAndy King 				found = true;
523d021c344SAndy King 				break;
524d021c344SAndy King 			}
525d021c344SAndy King 		}
526d021c344SAndy King 
527d021c344SAndy King 		if (!found)
528d021c344SAndy King 			return -EADDRNOTAVAIL;
529d021c344SAndy King 	} else {
530d021c344SAndy King 		/* If port is in reserved range, ensure caller
531d021c344SAndy King 		 * has necessary privileges.
532d021c344SAndy King 		 */
533d021c344SAndy King 		if (addr->svm_port <= LAST_RESERVED_PORT &&
534d021c344SAndy King 		    !capable(CAP_NET_BIND_SERVICE)) {
535d021c344SAndy King 			return -EACCES;
536d021c344SAndy King 		}
537d021c344SAndy King 
538d021c344SAndy King 		if (__vsock_find_bound_socket(&new_addr))
539d021c344SAndy King 			return -EADDRINUSE;
540d021c344SAndy King 	}
541d021c344SAndy King 
542d021c344SAndy King 	vsock_addr_init(&vsk->local_addr, new_addr.svm_cid, new_addr.svm_port);
543d021c344SAndy King 
544d021c344SAndy King 	/* Remove stream sockets from the unbound list and add them to the hash
545d021c344SAndy King 	 * table for easy lookup by its address.  The unbound list is simply an
546d021c344SAndy King 	 * extra entry at the end of the hash table, a trick used by AF_UNIX.
547d021c344SAndy King 	 */
548d021c344SAndy King 	__vsock_remove_bound(vsk);
549d021c344SAndy King 	__vsock_insert_bound(vsock_bound_sockets(&vsk->local_addr), vsk);
550d021c344SAndy King 
551d021c344SAndy King 	return 0;
552d021c344SAndy King }
553d021c344SAndy King 
554d021c344SAndy King static int __vsock_bind_dgram(struct vsock_sock *vsk,
555d021c344SAndy King 			      struct sockaddr_vm *addr)
556d021c344SAndy King {
557d021c344SAndy King 	return transport->dgram_bind(vsk, addr);
558d021c344SAndy King }
559d021c344SAndy King 
560d021c344SAndy King static int __vsock_bind(struct sock *sk, struct sockaddr_vm *addr)
561d021c344SAndy King {
562d021c344SAndy King 	struct vsock_sock *vsk = vsock_sk(sk);
563d021c344SAndy King 	u32 cid;
564d021c344SAndy King 	int retval;
565d021c344SAndy King 
566d021c344SAndy King 	/* First ensure this socket isn't already bound. */
567d021c344SAndy King 	if (vsock_addr_bound(&vsk->local_addr))
568d021c344SAndy King 		return -EINVAL;
569d021c344SAndy King 
570d021c344SAndy King 	/* Now bind to the provided address or select appropriate values if
571d021c344SAndy King 	 * none are provided (VMADDR_CID_ANY and VMADDR_PORT_ANY).  Note that
572d021c344SAndy King 	 * like AF_INET prevents binding to a non-local IP address (in most
573d021c344SAndy King 	 * cases), we only allow binding to the local CID.
574d021c344SAndy King 	 */
575d021c344SAndy King 	cid = transport->get_local_cid();
576d021c344SAndy King 	if (addr->svm_cid != cid && addr->svm_cid != VMADDR_CID_ANY)
577d021c344SAndy King 		return -EADDRNOTAVAIL;
578d021c344SAndy King 
579d021c344SAndy King 	switch (sk->sk_socket->type) {
580d021c344SAndy King 	case SOCK_STREAM:
581d021c344SAndy King 		spin_lock_bh(&vsock_table_lock);
582d021c344SAndy King 		retval = __vsock_bind_stream(vsk, addr);
583d021c344SAndy King 		spin_unlock_bh(&vsock_table_lock);
584d021c344SAndy King 		break;
585d021c344SAndy King 
586d021c344SAndy King 	case SOCK_DGRAM:
587d021c344SAndy King 		retval = __vsock_bind_dgram(vsk, addr);
588d021c344SAndy King 		break;
589d021c344SAndy King 
590d021c344SAndy King 	default:
591d021c344SAndy King 		retval = -EINVAL;
592d021c344SAndy King 		break;
593d021c344SAndy King 	}
594d021c344SAndy King 
595d021c344SAndy King 	return retval;
596d021c344SAndy King }
597d021c344SAndy King 
598d021c344SAndy King struct sock *__vsock_create(struct net *net,
599d021c344SAndy King 			    struct socket *sock,
600d021c344SAndy King 			    struct sock *parent,
601d021c344SAndy King 			    gfp_t priority,
60211aa9c28SEric W. Biederman 			    unsigned short type,
60311aa9c28SEric W. Biederman 			    int kern)
604d021c344SAndy King {
605d021c344SAndy King 	struct sock *sk;
606d021c344SAndy King 	struct vsock_sock *psk;
607d021c344SAndy King 	struct vsock_sock *vsk;
608d021c344SAndy King 
60911aa9c28SEric W. Biederman 	sk = sk_alloc(net, AF_VSOCK, priority, &vsock_proto, kern);
610d021c344SAndy King 	if (!sk)
611d021c344SAndy King 		return NULL;
612d021c344SAndy King 
613d021c344SAndy King 	sock_init_data(sock, sk);
614d021c344SAndy King 
615d021c344SAndy King 	/* sk->sk_type is normally set in sock_init_data, but only if sock is
616d021c344SAndy King 	 * non-NULL. We make sure that our sockets always have a type by
617d021c344SAndy King 	 * setting it here if needed.
618d021c344SAndy King 	 */
619d021c344SAndy King 	if (!sock)
620d021c344SAndy King 		sk->sk_type = type;
621d021c344SAndy King 
622d021c344SAndy King 	vsk = vsock_sk(sk);
623d021c344SAndy King 	vsock_addr_init(&vsk->local_addr, VMADDR_CID_ANY, VMADDR_PORT_ANY);
624d021c344SAndy King 	vsock_addr_init(&vsk->remote_addr, VMADDR_CID_ANY, VMADDR_PORT_ANY);
625d021c344SAndy King 
626d021c344SAndy King 	sk->sk_destruct = vsock_sk_destruct;
627d021c344SAndy King 	sk->sk_backlog_rcv = vsock_queue_rcv_skb;
628d021c344SAndy King 	sk->sk_state = 0;
629d021c344SAndy King 	sock_reset_flag(sk, SOCK_DONE);
630d021c344SAndy King 
631d021c344SAndy King 	INIT_LIST_HEAD(&vsk->bound_table);
632d021c344SAndy King 	INIT_LIST_HEAD(&vsk->connected_table);
633d021c344SAndy King 	vsk->listener = NULL;
634d021c344SAndy King 	INIT_LIST_HEAD(&vsk->pending_links);
635d021c344SAndy King 	INIT_LIST_HEAD(&vsk->accept_queue);
636d021c344SAndy King 	vsk->rejected = false;
637d021c344SAndy King 	vsk->sent_request = false;
638d021c344SAndy King 	vsk->ignore_connecting_rst = false;
639d021c344SAndy King 	vsk->peer_shutdown = 0;
640d021c344SAndy King 
641d021c344SAndy King 	psk = parent ? vsock_sk(parent) : NULL;
642d021c344SAndy King 	if (parent) {
643d021c344SAndy King 		vsk->trusted = psk->trusted;
644d021c344SAndy King 		vsk->owner = get_cred(psk->owner);
645d021c344SAndy King 		vsk->connect_timeout = psk->connect_timeout;
646d021c344SAndy King 	} else {
647d021c344SAndy King 		vsk->trusted = capable(CAP_NET_ADMIN);
648d021c344SAndy King 		vsk->owner = get_current_cred();
649d021c344SAndy King 		vsk->connect_timeout = VSOCK_DEFAULT_CONNECT_TIMEOUT;
650d021c344SAndy King 	}
651d021c344SAndy King 
652d021c344SAndy King 	if (transport->init(vsk, psk) < 0) {
653d021c344SAndy King 		sk_free(sk);
654d021c344SAndy King 		return NULL;
655d021c344SAndy King 	}
656d021c344SAndy King 
657d021c344SAndy King 	if (sock)
658d021c344SAndy King 		vsock_insert_unbound(vsk);
659d021c344SAndy King 
660d021c344SAndy King 	return sk;
661d021c344SAndy King }
662d021c344SAndy King EXPORT_SYMBOL_GPL(__vsock_create);
663d021c344SAndy King 
664d021c344SAndy King static void __vsock_release(struct sock *sk)
665d021c344SAndy King {
666d021c344SAndy King 	if (sk) {
667d021c344SAndy King 		struct sk_buff *skb;
668d021c344SAndy King 		struct sock *pending;
669d021c344SAndy King 		struct vsock_sock *vsk;
670d021c344SAndy King 
671d021c344SAndy King 		vsk = vsock_sk(sk);
672d021c344SAndy King 		pending = NULL;	/* Compiler warning. */
673d021c344SAndy King 
674d021c344SAndy King 		transport->release(vsk);
675d021c344SAndy King 
676d021c344SAndy King 		lock_sock(sk);
677d021c344SAndy King 		sock_orphan(sk);
678d021c344SAndy King 		sk->sk_shutdown = SHUTDOWN_MASK;
679d021c344SAndy King 
680d021c344SAndy King 		while ((skb = skb_dequeue(&sk->sk_receive_queue)))
681d021c344SAndy King 			kfree_skb(skb);
682d021c344SAndy King 
683d021c344SAndy King 		/* Clean up any sockets that never were accepted. */
684d021c344SAndy King 		while ((pending = vsock_dequeue_accept(sk)) != NULL) {
685d021c344SAndy King 			__vsock_release(pending);
686d021c344SAndy King 			sock_put(pending);
687d021c344SAndy King 		}
688d021c344SAndy King 
689d021c344SAndy King 		release_sock(sk);
690d021c344SAndy King 		sock_put(sk);
691d021c344SAndy King 	}
692d021c344SAndy King }
693d021c344SAndy King 
694d021c344SAndy King static void vsock_sk_destruct(struct sock *sk)
695d021c344SAndy King {
696d021c344SAndy King 	struct vsock_sock *vsk = vsock_sk(sk);
697d021c344SAndy King 
698d021c344SAndy King 	transport->destruct(vsk);
699d021c344SAndy King 
700d021c344SAndy King 	/* When clearing these addresses, there's no need to set the family and
701d021c344SAndy King 	 * possibly register the address family with the kernel.
702d021c344SAndy King 	 */
703d021c344SAndy King 	vsock_addr_init(&vsk->local_addr, VMADDR_CID_ANY, VMADDR_PORT_ANY);
704d021c344SAndy King 	vsock_addr_init(&vsk->remote_addr, VMADDR_CID_ANY, VMADDR_PORT_ANY);
705d021c344SAndy King 
706d021c344SAndy King 	put_cred(vsk->owner);
707d021c344SAndy King }
708d021c344SAndy King 
709d021c344SAndy King static int vsock_queue_rcv_skb(struct sock *sk, struct sk_buff *skb)
710d021c344SAndy King {
711d021c344SAndy King 	int err;
712d021c344SAndy King 
713d021c344SAndy King 	err = sock_queue_rcv_skb(sk, skb);
714d021c344SAndy King 	if (err)
715d021c344SAndy King 		kfree_skb(skb);
716d021c344SAndy King 
717d021c344SAndy King 	return err;
718d021c344SAndy King }
719d021c344SAndy King 
720d021c344SAndy King s64 vsock_stream_has_data(struct vsock_sock *vsk)
721d021c344SAndy King {
722d021c344SAndy King 	return transport->stream_has_data(vsk);
723d021c344SAndy King }
724d021c344SAndy King EXPORT_SYMBOL_GPL(vsock_stream_has_data);
725d021c344SAndy King 
726d021c344SAndy King s64 vsock_stream_has_space(struct vsock_sock *vsk)
727d021c344SAndy King {
728d021c344SAndy King 	return transport->stream_has_space(vsk);
729d021c344SAndy King }
730d021c344SAndy King EXPORT_SYMBOL_GPL(vsock_stream_has_space);
731d021c344SAndy King 
732d021c344SAndy King static int vsock_release(struct socket *sock)
733d021c344SAndy King {
734d021c344SAndy King 	__vsock_release(sock->sk);
735d021c344SAndy King 	sock->sk = NULL;
736d021c344SAndy King 	sock->state = SS_FREE;
737d021c344SAndy King 
738d021c344SAndy King 	return 0;
739d021c344SAndy King }
740d021c344SAndy King 
741d021c344SAndy King static int
742d021c344SAndy King vsock_bind(struct socket *sock, struct sockaddr *addr, int addr_len)
743d021c344SAndy King {
744d021c344SAndy King 	int err;
745d021c344SAndy King 	struct sock *sk;
746d021c344SAndy King 	struct sockaddr_vm *vm_addr;
747d021c344SAndy King 
748d021c344SAndy King 	sk = sock->sk;
749d021c344SAndy King 
750d021c344SAndy King 	if (vsock_addr_cast(addr, addr_len, &vm_addr) != 0)
751d021c344SAndy King 		return -EINVAL;
752d021c344SAndy King 
753d021c344SAndy King 	lock_sock(sk);
754d021c344SAndy King 	err = __vsock_bind(sk, vm_addr);
755d021c344SAndy King 	release_sock(sk);
756d021c344SAndy King 
757d021c344SAndy King 	return err;
758d021c344SAndy King }
759d021c344SAndy King 
760d021c344SAndy King static int vsock_getname(struct socket *sock,
761d021c344SAndy King 			 struct sockaddr *addr, int *addr_len, int peer)
762d021c344SAndy King {
763d021c344SAndy King 	int err;
764d021c344SAndy King 	struct sock *sk;
765d021c344SAndy King 	struct vsock_sock *vsk;
766d021c344SAndy King 	struct sockaddr_vm *vm_addr;
767d021c344SAndy King 
768d021c344SAndy King 	sk = sock->sk;
769d021c344SAndy King 	vsk = vsock_sk(sk);
770d021c344SAndy King 	err = 0;
771d021c344SAndy King 
772d021c344SAndy King 	lock_sock(sk);
773d021c344SAndy King 
774d021c344SAndy King 	if (peer) {
775d021c344SAndy King 		if (sock->state != SS_CONNECTED) {
776d021c344SAndy King 			err = -ENOTCONN;
777d021c344SAndy King 			goto out;
778d021c344SAndy King 		}
779d021c344SAndy King 		vm_addr = &vsk->remote_addr;
780d021c344SAndy King 	} else {
781d021c344SAndy King 		vm_addr = &vsk->local_addr;
782d021c344SAndy King 	}
783d021c344SAndy King 
784d021c344SAndy King 	if (!vm_addr) {
785d021c344SAndy King 		err = -EINVAL;
786d021c344SAndy King 		goto out;
787d021c344SAndy King 	}
788d021c344SAndy King 
789d021c344SAndy King 	/* sys_getsockname() and sys_getpeername() pass us a
790d021c344SAndy King 	 * MAX_SOCK_ADDR-sized buffer and don't set addr_len.  Unfortunately
791d021c344SAndy King 	 * that macro is defined in socket.c instead of .h, so we hardcode its
792d021c344SAndy King 	 * value here.
793d021c344SAndy King 	 */
794d021c344SAndy King 	BUILD_BUG_ON(sizeof(*vm_addr) > 128);
795d021c344SAndy King 	memcpy(addr, vm_addr, sizeof(*vm_addr));
796d021c344SAndy King 	*addr_len = sizeof(*vm_addr);
797d021c344SAndy King 
798d021c344SAndy King out:
799d021c344SAndy King 	release_sock(sk);
800d021c344SAndy King 	return err;
801d021c344SAndy King }
802d021c344SAndy King 
803d021c344SAndy King static int vsock_shutdown(struct socket *sock, int mode)
804d021c344SAndy King {
805d021c344SAndy King 	int err;
806d021c344SAndy King 	struct sock *sk;
807d021c344SAndy King 
808d021c344SAndy King 	/* User level uses SHUT_RD (0) and SHUT_WR (1), but the kernel uses
809d021c344SAndy King 	 * RCV_SHUTDOWN (1) and SEND_SHUTDOWN (2), so we must increment mode
810d021c344SAndy King 	 * here like the other address families do.  Note also that the
811d021c344SAndy King 	 * increment makes SHUT_RDWR (2) into RCV_SHUTDOWN | SEND_SHUTDOWN (3),
812d021c344SAndy King 	 * which is what we want.
813d021c344SAndy King 	 */
814d021c344SAndy King 	mode++;
815d021c344SAndy King 
816d021c344SAndy King 	if ((mode & ~SHUTDOWN_MASK) || !mode)
817d021c344SAndy King 		return -EINVAL;
818d021c344SAndy King 
819d021c344SAndy King 	/* If this is a STREAM socket and it is not connected then bail out
820d021c344SAndy King 	 * immediately.  If it is a DGRAM socket then we must first kick the
821d021c344SAndy King 	 * socket so that it wakes up from any sleeping calls, for example
822d021c344SAndy King 	 * recv(), and then afterwards return the error.
823d021c344SAndy King 	 */
824d021c344SAndy King 
825d021c344SAndy King 	sk = sock->sk;
826d021c344SAndy King 	if (sock->state == SS_UNCONNECTED) {
827d021c344SAndy King 		err = -ENOTCONN;
828d021c344SAndy King 		if (sk->sk_type == SOCK_STREAM)
829d021c344SAndy King 			return err;
830d021c344SAndy King 	} else {
831d021c344SAndy King 		sock->state = SS_DISCONNECTING;
832d021c344SAndy King 		err = 0;
833d021c344SAndy King 	}
834d021c344SAndy King 
835d021c344SAndy King 	/* Receive and send shutdowns are treated alike. */
836d021c344SAndy King 	mode = mode & (RCV_SHUTDOWN | SEND_SHUTDOWN);
837d021c344SAndy King 	if (mode) {
838d021c344SAndy King 		lock_sock(sk);
839d021c344SAndy King 		sk->sk_shutdown |= mode;
840d021c344SAndy King 		sk->sk_state_change(sk);
841d021c344SAndy King 		release_sock(sk);
842d021c344SAndy King 
843d021c344SAndy King 		if (sk->sk_type == SOCK_STREAM) {
844d021c344SAndy King 			sock_reset_flag(sk, SOCK_DONE);
845d021c344SAndy King 			vsock_send_shutdown(sk, mode);
846d021c344SAndy King 		}
847d021c344SAndy King 	}
848d021c344SAndy King 
849d021c344SAndy King 	return err;
850d021c344SAndy King }
851d021c344SAndy King 
852d021c344SAndy King static unsigned int vsock_poll(struct file *file, struct socket *sock,
853d021c344SAndy King 			       poll_table *wait)
854d021c344SAndy King {
855d021c344SAndy King 	struct sock *sk;
856d021c344SAndy King 	unsigned int mask;
857d021c344SAndy King 	struct vsock_sock *vsk;
858d021c344SAndy King 
859d021c344SAndy King 	sk = sock->sk;
860d021c344SAndy King 	vsk = vsock_sk(sk);
861d021c344SAndy King 
862d021c344SAndy King 	poll_wait(file, sk_sleep(sk), wait);
863d021c344SAndy King 	mask = 0;
864d021c344SAndy King 
865d021c344SAndy King 	if (sk->sk_err)
866d021c344SAndy King 		/* Signify that there has been an error on this socket. */
867d021c344SAndy King 		mask |= POLLERR;
868d021c344SAndy King 
869d021c344SAndy King 	/* INET sockets treat local write shutdown and peer write shutdown as a
870d021c344SAndy King 	 * case of POLLHUP set.
871d021c344SAndy King 	 */
872d021c344SAndy King 	if ((sk->sk_shutdown == SHUTDOWN_MASK) ||
873d021c344SAndy King 	    ((sk->sk_shutdown & SEND_SHUTDOWN) &&
874d021c344SAndy King 	     (vsk->peer_shutdown & SEND_SHUTDOWN))) {
875d021c344SAndy King 		mask |= POLLHUP;
876d021c344SAndy King 	}
877d021c344SAndy King 
878d021c344SAndy King 	if (sk->sk_shutdown & RCV_SHUTDOWN ||
879d021c344SAndy King 	    vsk->peer_shutdown & SEND_SHUTDOWN) {
880d021c344SAndy King 		mask |= POLLRDHUP;
881d021c344SAndy King 	}
882d021c344SAndy King 
883d021c344SAndy King 	if (sock->type == SOCK_DGRAM) {
884d021c344SAndy King 		/* For datagram sockets we can read if there is something in
885d021c344SAndy King 		 * the queue and write as long as the socket isn't shutdown for
886d021c344SAndy King 		 * sending.
887d021c344SAndy King 		 */
888d021c344SAndy King 		if (!skb_queue_empty(&sk->sk_receive_queue) ||
889d021c344SAndy King 		    (sk->sk_shutdown & RCV_SHUTDOWN)) {
890d021c344SAndy King 			mask |= POLLIN | POLLRDNORM;
891d021c344SAndy King 		}
892d021c344SAndy King 
893d021c344SAndy King 		if (!(sk->sk_shutdown & SEND_SHUTDOWN))
894d021c344SAndy King 			mask |= POLLOUT | POLLWRNORM | POLLWRBAND;
895d021c344SAndy King 
896d021c344SAndy King 	} else if (sock->type == SOCK_STREAM) {
897d021c344SAndy King 		lock_sock(sk);
898d021c344SAndy King 
899d021c344SAndy King 		/* Listening sockets that have connections in their accept
900d021c344SAndy King 		 * queue can be read.
901d021c344SAndy King 		 */
902ea3803c1SStefan Hajnoczi 		if (sk->sk_state == VSOCK_SS_LISTEN
903d021c344SAndy King 		    && !vsock_is_accept_queue_empty(sk))
904d021c344SAndy King 			mask |= POLLIN | POLLRDNORM;
905d021c344SAndy King 
906d021c344SAndy King 		/* If there is something in the queue then we can read. */
907d021c344SAndy King 		if (transport->stream_is_active(vsk) &&
908d021c344SAndy King 		    !(sk->sk_shutdown & RCV_SHUTDOWN)) {
909d021c344SAndy King 			bool data_ready_now = false;
910d021c344SAndy King 			int ret = transport->notify_poll_in(
911d021c344SAndy King 					vsk, 1, &data_ready_now);
912d021c344SAndy King 			if (ret < 0) {
913d021c344SAndy King 				mask |= POLLERR;
914d021c344SAndy King 			} else {
915d021c344SAndy King 				if (data_ready_now)
916d021c344SAndy King 					mask |= POLLIN | POLLRDNORM;
917d021c344SAndy King 
918d021c344SAndy King 			}
919d021c344SAndy King 		}
920d021c344SAndy King 
921d021c344SAndy King 		/* Sockets whose connections have been closed, reset, or
922d021c344SAndy King 		 * terminated should also be considered read, and we check the
923d021c344SAndy King 		 * shutdown flag for that.
924d021c344SAndy King 		 */
925d021c344SAndy King 		if (sk->sk_shutdown & RCV_SHUTDOWN ||
926d021c344SAndy King 		    vsk->peer_shutdown & SEND_SHUTDOWN) {
927d021c344SAndy King 			mask |= POLLIN | POLLRDNORM;
928d021c344SAndy King 		}
929d021c344SAndy King 
930d021c344SAndy King 		/* Connected sockets that can produce data can be written. */
931d021c344SAndy King 		if (sk->sk_state == SS_CONNECTED) {
932d021c344SAndy King 			if (!(sk->sk_shutdown & SEND_SHUTDOWN)) {
933d021c344SAndy King 				bool space_avail_now = false;
934d021c344SAndy King 				int ret = transport->notify_poll_out(
935d021c344SAndy King 						vsk, 1, &space_avail_now);
936d021c344SAndy King 				if (ret < 0) {
937d021c344SAndy King 					mask |= POLLERR;
938d021c344SAndy King 				} else {
939d021c344SAndy King 					if (space_avail_now)
940d021c344SAndy King 						/* Remove POLLWRBAND since INET
941d021c344SAndy King 						 * sockets are not setting it.
942d021c344SAndy King 						 */
943d021c344SAndy King 						mask |= POLLOUT | POLLWRNORM;
944d021c344SAndy King 
945d021c344SAndy King 				}
946d021c344SAndy King 			}
947d021c344SAndy King 		}
948d021c344SAndy King 
949d021c344SAndy King 		/* Simulate INET socket poll behaviors, which sets
950d021c344SAndy King 		 * POLLOUT|POLLWRNORM when peer is closed and nothing to read,
951d021c344SAndy King 		 * but local send is not shutdown.
952d021c344SAndy King 		 */
953d021c344SAndy King 		if (sk->sk_state == SS_UNCONNECTED) {
954d021c344SAndy King 			if (!(sk->sk_shutdown & SEND_SHUTDOWN))
955d021c344SAndy King 				mask |= POLLOUT | POLLWRNORM;
956d021c344SAndy King 
957d021c344SAndy King 		}
958d021c344SAndy King 
959d021c344SAndy King 		release_sock(sk);
960d021c344SAndy King 	}
961d021c344SAndy King 
962d021c344SAndy King 	return mask;
963d021c344SAndy King }
964d021c344SAndy King 
9651b784140SYing Xue static int vsock_dgram_sendmsg(struct socket *sock, struct msghdr *msg,
9661b784140SYing Xue 			       size_t len)
967d021c344SAndy King {
968d021c344SAndy King 	int err;
969d021c344SAndy King 	struct sock *sk;
970d021c344SAndy King 	struct vsock_sock *vsk;
971d021c344SAndy King 	struct sockaddr_vm *remote_addr;
972d021c344SAndy King 
973d021c344SAndy King 	if (msg->msg_flags & MSG_OOB)
974d021c344SAndy King 		return -EOPNOTSUPP;
975d021c344SAndy King 
976d021c344SAndy King 	/* For now, MSG_DONTWAIT is always assumed... */
977d021c344SAndy King 	err = 0;
978d021c344SAndy King 	sk = sock->sk;
979d021c344SAndy King 	vsk = vsock_sk(sk);
980d021c344SAndy King 
981d021c344SAndy King 	lock_sock(sk);
982d021c344SAndy King 
983b3a6dfe8SAsias He 	err = vsock_auto_bind(vsk);
984b3a6dfe8SAsias He 	if (err)
985d021c344SAndy King 		goto out;
986d021c344SAndy King 
987d021c344SAndy King 
988d021c344SAndy King 	/* If the provided message contains an address, use that.  Otherwise
989d021c344SAndy King 	 * fall back on the socket's remote handle (if it has been connected).
990d021c344SAndy King 	 */
991d021c344SAndy King 	if (msg->msg_name &&
992d021c344SAndy King 	    vsock_addr_cast(msg->msg_name, msg->msg_namelen,
993d021c344SAndy King 			    &remote_addr) == 0) {
994d021c344SAndy King 		/* Ensure this address is of the right type and is a valid
995d021c344SAndy King 		 * destination.
996d021c344SAndy King 		 */
997d021c344SAndy King 
998d021c344SAndy King 		if (remote_addr->svm_cid == VMADDR_CID_ANY)
999d021c344SAndy King 			remote_addr->svm_cid = transport->get_local_cid();
1000d021c344SAndy King 
1001d021c344SAndy King 		if (!vsock_addr_bound(remote_addr)) {
1002d021c344SAndy King 			err = -EINVAL;
1003d021c344SAndy King 			goto out;
1004d021c344SAndy King 		}
1005d021c344SAndy King 	} else if (sock->state == SS_CONNECTED) {
1006d021c344SAndy King 		remote_addr = &vsk->remote_addr;
1007d021c344SAndy King 
1008d021c344SAndy King 		if (remote_addr->svm_cid == VMADDR_CID_ANY)
1009d021c344SAndy King 			remote_addr->svm_cid = transport->get_local_cid();
1010d021c344SAndy King 
1011d021c344SAndy King 		/* XXX Should connect() or this function ensure remote_addr is
1012d021c344SAndy King 		 * bound?
1013d021c344SAndy King 		 */
1014d021c344SAndy King 		if (!vsock_addr_bound(&vsk->remote_addr)) {
1015d021c344SAndy King 			err = -EINVAL;
1016d021c344SAndy King 			goto out;
1017d021c344SAndy King 		}
1018d021c344SAndy King 	} else {
1019d021c344SAndy King 		err = -EINVAL;
1020d021c344SAndy King 		goto out;
1021d021c344SAndy King 	}
1022d021c344SAndy King 
1023d021c344SAndy King 	if (!transport->dgram_allow(remote_addr->svm_cid,
1024d021c344SAndy King 				    remote_addr->svm_port)) {
1025d021c344SAndy King 		err = -EINVAL;
1026d021c344SAndy King 		goto out;
1027d021c344SAndy King 	}
1028d021c344SAndy King 
10290f7db23aSAl Viro 	err = transport->dgram_enqueue(vsk, remote_addr, msg, len);
1030d021c344SAndy King 
1031d021c344SAndy King out:
1032d021c344SAndy King 	release_sock(sk);
1033d021c344SAndy King 	return err;
1034d021c344SAndy King }
1035d021c344SAndy King 
1036d021c344SAndy King static int vsock_dgram_connect(struct socket *sock,
1037d021c344SAndy King 			       struct sockaddr *addr, int addr_len, int flags)
1038d021c344SAndy King {
1039d021c344SAndy King 	int err;
1040d021c344SAndy King 	struct sock *sk;
1041d021c344SAndy King 	struct vsock_sock *vsk;
1042d021c344SAndy King 	struct sockaddr_vm *remote_addr;
1043d021c344SAndy King 
1044d021c344SAndy King 	sk = sock->sk;
1045d021c344SAndy King 	vsk = vsock_sk(sk);
1046d021c344SAndy King 
1047d021c344SAndy King 	err = vsock_addr_cast(addr, addr_len, &remote_addr);
1048d021c344SAndy King 	if (err == -EAFNOSUPPORT && remote_addr->svm_family == AF_UNSPEC) {
1049d021c344SAndy King 		lock_sock(sk);
1050d021c344SAndy King 		vsock_addr_init(&vsk->remote_addr, VMADDR_CID_ANY,
1051d021c344SAndy King 				VMADDR_PORT_ANY);
1052d021c344SAndy King 		sock->state = SS_UNCONNECTED;
1053d021c344SAndy King 		release_sock(sk);
1054d021c344SAndy King 		return 0;
1055d021c344SAndy King 	} else if (err != 0)
1056d021c344SAndy King 		return -EINVAL;
1057d021c344SAndy King 
1058d021c344SAndy King 	lock_sock(sk);
1059d021c344SAndy King 
1060b3a6dfe8SAsias He 	err = vsock_auto_bind(vsk);
1061b3a6dfe8SAsias He 	if (err)
1062d021c344SAndy King 		goto out;
1063d021c344SAndy King 
1064d021c344SAndy King 	if (!transport->dgram_allow(remote_addr->svm_cid,
1065d021c344SAndy King 				    remote_addr->svm_port)) {
1066d021c344SAndy King 		err = -EINVAL;
1067d021c344SAndy King 		goto out;
1068d021c344SAndy King 	}
1069d021c344SAndy King 
1070d021c344SAndy King 	memcpy(&vsk->remote_addr, remote_addr, sizeof(vsk->remote_addr));
1071d021c344SAndy King 	sock->state = SS_CONNECTED;
1072d021c344SAndy King 
1073d021c344SAndy King out:
1074d021c344SAndy King 	release_sock(sk);
1075d021c344SAndy King 	return err;
1076d021c344SAndy King }
1077d021c344SAndy King 
10781b784140SYing Xue static int vsock_dgram_recvmsg(struct socket *sock, struct msghdr *msg,
10791b784140SYing Xue 			       size_t len, int flags)
1080d021c344SAndy King {
10811b784140SYing Xue 	return transport->dgram_dequeue(vsock_sk(sock->sk), msg, len, flags);
1082d021c344SAndy King }
1083d021c344SAndy King 
1084d021c344SAndy King static const struct proto_ops vsock_dgram_ops = {
1085d021c344SAndy King 	.family = PF_VSOCK,
1086d021c344SAndy King 	.owner = THIS_MODULE,
1087d021c344SAndy King 	.release = vsock_release,
1088d021c344SAndy King 	.bind = vsock_bind,
1089d021c344SAndy King 	.connect = vsock_dgram_connect,
1090d021c344SAndy King 	.socketpair = sock_no_socketpair,
1091d021c344SAndy King 	.accept = sock_no_accept,
1092d021c344SAndy King 	.getname = vsock_getname,
1093d021c344SAndy King 	.poll = vsock_poll,
1094d021c344SAndy King 	.ioctl = sock_no_ioctl,
1095d021c344SAndy King 	.listen = sock_no_listen,
1096d021c344SAndy King 	.shutdown = vsock_shutdown,
1097d021c344SAndy King 	.setsockopt = sock_no_setsockopt,
1098d021c344SAndy King 	.getsockopt = sock_no_getsockopt,
1099d021c344SAndy King 	.sendmsg = vsock_dgram_sendmsg,
1100d021c344SAndy King 	.recvmsg = vsock_dgram_recvmsg,
1101d021c344SAndy King 	.mmap = sock_no_mmap,
1102d021c344SAndy King 	.sendpage = sock_no_sendpage,
1103d021c344SAndy King };
1104d021c344SAndy King 
1105380feae0SPeng Tao static int vsock_transport_cancel_pkt(struct vsock_sock *vsk)
1106380feae0SPeng Tao {
1107380feae0SPeng Tao 	if (!transport->cancel_pkt)
1108380feae0SPeng Tao 		return -EOPNOTSUPP;
1109380feae0SPeng Tao 
1110380feae0SPeng Tao 	return transport->cancel_pkt(vsk);
1111380feae0SPeng Tao }
1112380feae0SPeng Tao 
1113d021c344SAndy King static void vsock_connect_timeout(struct work_struct *work)
1114d021c344SAndy King {
1115d021c344SAndy King 	struct sock *sk;
1116d021c344SAndy King 	struct vsock_sock *vsk;
1117380feae0SPeng Tao 	int cancel = 0;
1118d021c344SAndy King 
1119d021c344SAndy King 	vsk = container_of(work, struct vsock_sock, dwork.work);
1120d021c344SAndy King 	sk = sk_vsock(vsk);
1121d021c344SAndy King 
1122d021c344SAndy King 	lock_sock(sk);
1123d021c344SAndy King 	if (sk->sk_state == SS_CONNECTING &&
1124d021c344SAndy King 	    (sk->sk_shutdown != SHUTDOWN_MASK)) {
1125d021c344SAndy King 		sk->sk_state = SS_UNCONNECTED;
1126d021c344SAndy King 		sk->sk_err = ETIMEDOUT;
1127d021c344SAndy King 		sk->sk_error_report(sk);
1128380feae0SPeng Tao 		cancel = 1;
1129d021c344SAndy King 	}
1130d021c344SAndy King 	release_sock(sk);
1131380feae0SPeng Tao 	if (cancel)
1132380feae0SPeng Tao 		vsock_transport_cancel_pkt(vsk);
1133d021c344SAndy King 
1134d021c344SAndy King 	sock_put(sk);
1135d021c344SAndy King }
1136d021c344SAndy King 
1137d021c344SAndy King static int vsock_stream_connect(struct socket *sock, struct sockaddr *addr,
1138d021c344SAndy King 				int addr_len, int flags)
1139d021c344SAndy King {
1140d021c344SAndy King 	int err;
1141d021c344SAndy King 	struct sock *sk;
1142d021c344SAndy King 	struct vsock_sock *vsk;
1143d021c344SAndy King 	struct sockaddr_vm *remote_addr;
1144d021c344SAndy King 	long timeout;
1145d021c344SAndy King 	DEFINE_WAIT(wait);
1146d021c344SAndy King 
1147d021c344SAndy King 	err = 0;
1148d021c344SAndy King 	sk = sock->sk;
1149d021c344SAndy King 	vsk = vsock_sk(sk);
1150d021c344SAndy King 
1151d021c344SAndy King 	lock_sock(sk);
1152d021c344SAndy King 
1153d021c344SAndy King 	/* XXX AF_UNSPEC should make us disconnect like AF_INET. */
1154d021c344SAndy King 	switch (sock->state) {
1155d021c344SAndy King 	case SS_CONNECTED:
1156d021c344SAndy King 		err = -EISCONN;
1157d021c344SAndy King 		goto out;
1158d021c344SAndy King 	case SS_DISCONNECTING:
1159d021c344SAndy King 		err = -EINVAL;
1160d021c344SAndy King 		goto out;
1161d021c344SAndy King 	case SS_CONNECTING:
1162d021c344SAndy King 		/* This continues on so we can move sock into the SS_CONNECTED
1163d021c344SAndy King 		 * state once the connection has completed (at which point err
1164d021c344SAndy King 		 * will be set to zero also).  Otherwise, we will either wait
1165d021c344SAndy King 		 * for the connection or return -EALREADY should this be a
1166d021c344SAndy King 		 * non-blocking call.
1167d021c344SAndy King 		 */
1168d021c344SAndy King 		err = -EALREADY;
1169d021c344SAndy King 		break;
1170d021c344SAndy King 	default:
1171ea3803c1SStefan Hajnoczi 		if ((sk->sk_state == VSOCK_SS_LISTEN) ||
1172d021c344SAndy King 		    vsock_addr_cast(addr, addr_len, &remote_addr) != 0) {
1173d021c344SAndy King 			err = -EINVAL;
1174d021c344SAndy King 			goto out;
1175d021c344SAndy King 		}
1176d021c344SAndy King 
1177d021c344SAndy King 		/* The hypervisor and well-known contexts do not have socket
1178d021c344SAndy King 		 * endpoints.
1179d021c344SAndy King 		 */
1180d021c344SAndy King 		if (!transport->stream_allow(remote_addr->svm_cid,
1181d021c344SAndy King 					     remote_addr->svm_port)) {
1182d021c344SAndy King 			err = -ENETUNREACH;
1183d021c344SAndy King 			goto out;
1184d021c344SAndy King 		}
1185d021c344SAndy King 
1186d021c344SAndy King 		/* Set the remote address that we are connecting to. */
1187d021c344SAndy King 		memcpy(&vsk->remote_addr, remote_addr,
1188d021c344SAndy King 		       sizeof(vsk->remote_addr));
1189d021c344SAndy King 
1190b3a6dfe8SAsias He 		err = vsock_auto_bind(vsk);
1191b3a6dfe8SAsias He 		if (err)
1192d021c344SAndy King 			goto out;
1193d021c344SAndy King 
1194d021c344SAndy King 		sk->sk_state = SS_CONNECTING;
1195d021c344SAndy King 
1196d021c344SAndy King 		err = transport->connect(vsk);
1197d021c344SAndy King 		if (err < 0)
1198d021c344SAndy King 			goto out;
1199d021c344SAndy King 
1200d021c344SAndy King 		/* Mark sock as connecting and set the error code to in
1201d021c344SAndy King 		 * progress in case this is a non-blocking connect.
1202d021c344SAndy King 		 */
1203d021c344SAndy King 		sock->state = SS_CONNECTING;
1204d021c344SAndy King 		err = -EINPROGRESS;
1205d021c344SAndy King 	}
1206d021c344SAndy King 
1207d021c344SAndy King 	/* The receive path will handle all communication until we are able to
1208d021c344SAndy King 	 * enter the connected state.  Here we wait for the connection to be
1209d021c344SAndy King 	 * completed or a notification of an error.
1210d021c344SAndy King 	 */
1211d021c344SAndy King 	timeout = vsk->connect_timeout;
1212d021c344SAndy King 	prepare_to_wait(sk_sleep(sk), &wait, TASK_INTERRUPTIBLE);
1213d021c344SAndy King 
1214d021c344SAndy King 	while (sk->sk_state != SS_CONNECTED && sk->sk_err == 0) {
1215d021c344SAndy King 		if (flags & O_NONBLOCK) {
1216d021c344SAndy King 			/* If we're not going to block, we schedule a timeout
1217d021c344SAndy King 			 * function to generate a timeout on the connection
1218d021c344SAndy King 			 * attempt, in case the peer doesn't respond in a
1219d021c344SAndy King 			 * timely manner. We hold on to the socket until the
1220d021c344SAndy King 			 * timeout fires.
1221d021c344SAndy King 			 */
1222d021c344SAndy King 			sock_hold(sk);
1223d021c344SAndy King 			INIT_DELAYED_WORK(&vsk->dwork,
1224d021c344SAndy King 					  vsock_connect_timeout);
1225d021c344SAndy King 			schedule_delayed_work(&vsk->dwork, timeout);
1226d021c344SAndy King 
1227d021c344SAndy King 			/* Skip ahead to preserve error code set above. */
1228d021c344SAndy King 			goto out_wait;
1229d021c344SAndy King 		}
1230d021c344SAndy King 
1231d021c344SAndy King 		release_sock(sk);
1232d021c344SAndy King 		timeout = schedule_timeout(timeout);
1233d021c344SAndy King 		lock_sock(sk);
1234d021c344SAndy King 
1235d021c344SAndy King 		if (signal_pending(current)) {
1236d021c344SAndy King 			err = sock_intr_errno(timeout);
1237f7f9b5e7SClaudio Imbrenda 			sk->sk_state = SS_UNCONNECTED;
1238f7f9b5e7SClaudio Imbrenda 			sock->state = SS_UNCONNECTED;
1239380feae0SPeng Tao 			vsock_transport_cancel_pkt(vsk);
1240f7f9b5e7SClaudio Imbrenda 			goto out_wait;
1241d021c344SAndy King 		} else if (timeout == 0) {
1242d021c344SAndy King 			err = -ETIMEDOUT;
1243f7f9b5e7SClaudio Imbrenda 			sk->sk_state = SS_UNCONNECTED;
1244f7f9b5e7SClaudio Imbrenda 			sock->state = SS_UNCONNECTED;
1245380feae0SPeng Tao 			vsock_transport_cancel_pkt(vsk);
1246f7f9b5e7SClaudio Imbrenda 			goto out_wait;
1247d021c344SAndy King 		}
1248d021c344SAndy King 
1249d021c344SAndy King 		prepare_to_wait(sk_sleep(sk), &wait, TASK_INTERRUPTIBLE);
1250d021c344SAndy King 	}
1251d021c344SAndy King 
1252d021c344SAndy King 	if (sk->sk_err) {
1253d021c344SAndy King 		err = -sk->sk_err;
1254f7f9b5e7SClaudio Imbrenda 		sk->sk_state = SS_UNCONNECTED;
1255f7f9b5e7SClaudio Imbrenda 		sock->state = SS_UNCONNECTED;
1256f7f9b5e7SClaudio Imbrenda 	} else {
1257d021c344SAndy King 		err = 0;
1258f7f9b5e7SClaudio Imbrenda 	}
1259d021c344SAndy King 
1260d021c344SAndy King out_wait:
1261d021c344SAndy King 	finish_wait(sk_sleep(sk), &wait);
1262d021c344SAndy King out:
1263d021c344SAndy King 	release_sock(sk);
1264d021c344SAndy King 	return err;
1265d021c344SAndy King }
1266d021c344SAndy King 
1267cdfbabfbSDavid Howells static int vsock_accept(struct socket *sock, struct socket *newsock, int flags,
1268cdfbabfbSDavid Howells 			bool kern)
1269d021c344SAndy King {
1270d021c344SAndy King 	struct sock *listener;
1271d021c344SAndy King 	int err;
1272d021c344SAndy King 	struct sock *connected;
1273d021c344SAndy King 	struct vsock_sock *vconnected;
1274d021c344SAndy King 	long timeout;
1275d021c344SAndy King 	DEFINE_WAIT(wait);
1276d021c344SAndy King 
1277d021c344SAndy King 	err = 0;
1278d021c344SAndy King 	listener = sock->sk;
1279d021c344SAndy King 
1280d021c344SAndy King 	lock_sock(listener);
1281d021c344SAndy King 
1282d021c344SAndy King 	if (sock->type != SOCK_STREAM) {
1283d021c344SAndy King 		err = -EOPNOTSUPP;
1284d021c344SAndy King 		goto out;
1285d021c344SAndy King 	}
1286d021c344SAndy King 
1287ea3803c1SStefan Hajnoczi 	if (listener->sk_state != VSOCK_SS_LISTEN) {
1288d021c344SAndy King 		err = -EINVAL;
1289d021c344SAndy King 		goto out;
1290d021c344SAndy King 	}
1291d021c344SAndy King 
1292d021c344SAndy King 	/* Wait for children sockets to appear; these are the new sockets
1293d021c344SAndy King 	 * created upon connection establishment.
1294d021c344SAndy King 	 */
1295d021c344SAndy King 	timeout = sock_sndtimeo(listener, flags & O_NONBLOCK);
1296d021c344SAndy King 	prepare_to_wait(sk_sleep(listener), &wait, TASK_INTERRUPTIBLE);
1297d021c344SAndy King 
1298d021c344SAndy King 	while ((connected = vsock_dequeue_accept(listener)) == NULL &&
1299d021c344SAndy King 	       listener->sk_err == 0) {
1300d021c344SAndy King 		release_sock(listener);
1301d021c344SAndy King 		timeout = schedule_timeout(timeout);
1302f7f9b5e7SClaudio Imbrenda 		finish_wait(sk_sleep(listener), &wait);
1303d021c344SAndy King 		lock_sock(listener);
1304d021c344SAndy King 
1305d021c344SAndy King 		if (signal_pending(current)) {
1306d021c344SAndy King 			err = sock_intr_errno(timeout);
1307f7f9b5e7SClaudio Imbrenda 			goto out;
1308d021c344SAndy King 		} else if (timeout == 0) {
1309d021c344SAndy King 			err = -EAGAIN;
1310f7f9b5e7SClaudio Imbrenda 			goto out;
1311d021c344SAndy King 		}
1312d021c344SAndy King 
1313d021c344SAndy King 		prepare_to_wait(sk_sleep(listener), &wait, TASK_INTERRUPTIBLE);
1314d021c344SAndy King 	}
1315f7f9b5e7SClaudio Imbrenda 	finish_wait(sk_sleep(listener), &wait);
1316d021c344SAndy King 
1317d021c344SAndy King 	if (listener->sk_err)
1318d021c344SAndy King 		err = -listener->sk_err;
1319d021c344SAndy King 
1320d021c344SAndy King 	if (connected) {
1321d021c344SAndy King 		listener->sk_ack_backlog--;
1322d021c344SAndy King 
13234192f672SStefan Hajnoczi 		lock_sock_nested(connected, SINGLE_DEPTH_NESTING);
1324d021c344SAndy King 		vconnected = vsock_sk(connected);
1325d021c344SAndy King 
1326d021c344SAndy King 		/* If the listener socket has received an error, then we should
1327d021c344SAndy King 		 * reject this socket and return.  Note that we simply mark the
1328d021c344SAndy King 		 * socket rejected, drop our reference, and let the cleanup
1329d021c344SAndy King 		 * function handle the cleanup; the fact that we found it in
1330d021c344SAndy King 		 * the listener's accept queue guarantees that the cleanup
1331d021c344SAndy King 		 * function hasn't run yet.
1332d021c344SAndy King 		 */
1333d021c344SAndy King 		if (err) {
1334d021c344SAndy King 			vconnected->rejected = true;
1335f7f9b5e7SClaudio Imbrenda 		} else {
1336d021c344SAndy King 			newsock->state = SS_CONNECTED;
1337d021c344SAndy King 			sock_graft(connected, newsock);
1338f7f9b5e7SClaudio Imbrenda 		}
1339f7f9b5e7SClaudio Imbrenda 
1340d021c344SAndy King 		release_sock(connected);
1341d021c344SAndy King 		sock_put(connected);
1342d021c344SAndy King 	}
1343d021c344SAndy King 
1344d021c344SAndy King out:
1345d021c344SAndy King 	release_sock(listener);
1346d021c344SAndy King 	return err;
1347d021c344SAndy King }
1348d021c344SAndy King 
1349d021c344SAndy King static int vsock_listen(struct socket *sock, int backlog)
1350d021c344SAndy King {
1351d021c344SAndy King 	int err;
1352d021c344SAndy King 	struct sock *sk;
1353d021c344SAndy King 	struct vsock_sock *vsk;
1354d021c344SAndy King 
1355d021c344SAndy King 	sk = sock->sk;
1356d021c344SAndy King 
1357d021c344SAndy King 	lock_sock(sk);
1358d021c344SAndy King 
1359d021c344SAndy King 	if (sock->type != SOCK_STREAM) {
1360d021c344SAndy King 		err = -EOPNOTSUPP;
1361d021c344SAndy King 		goto out;
1362d021c344SAndy King 	}
1363d021c344SAndy King 
1364d021c344SAndy King 	if (sock->state != SS_UNCONNECTED) {
1365d021c344SAndy King 		err = -EINVAL;
1366d021c344SAndy King 		goto out;
1367d021c344SAndy King 	}
1368d021c344SAndy King 
1369d021c344SAndy King 	vsk = vsock_sk(sk);
1370d021c344SAndy King 
1371d021c344SAndy King 	if (!vsock_addr_bound(&vsk->local_addr)) {
1372d021c344SAndy King 		err = -EINVAL;
1373d021c344SAndy King 		goto out;
1374d021c344SAndy King 	}
1375d021c344SAndy King 
1376d021c344SAndy King 	sk->sk_max_ack_backlog = backlog;
1377ea3803c1SStefan Hajnoczi 	sk->sk_state = VSOCK_SS_LISTEN;
1378d021c344SAndy King 
1379d021c344SAndy King 	err = 0;
1380d021c344SAndy King 
1381d021c344SAndy King out:
1382d021c344SAndy King 	release_sock(sk);
1383d021c344SAndy King 	return err;
1384d021c344SAndy King }
1385d021c344SAndy King 
1386d021c344SAndy King static int vsock_stream_setsockopt(struct socket *sock,
1387d021c344SAndy King 				   int level,
1388d021c344SAndy King 				   int optname,
1389d021c344SAndy King 				   char __user *optval,
1390d021c344SAndy King 				   unsigned int optlen)
1391d021c344SAndy King {
1392d021c344SAndy King 	int err;
1393d021c344SAndy King 	struct sock *sk;
1394d021c344SAndy King 	struct vsock_sock *vsk;
1395d021c344SAndy King 	u64 val;
1396d021c344SAndy King 
1397d021c344SAndy King 	if (level != AF_VSOCK)
1398d021c344SAndy King 		return -ENOPROTOOPT;
1399d021c344SAndy King 
1400d021c344SAndy King #define COPY_IN(_v)                                       \
1401d021c344SAndy King 	do {						  \
1402d021c344SAndy King 		if (optlen < sizeof(_v)) {		  \
1403d021c344SAndy King 			err = -EINVAL;			  \
1404d021c344SAndy King 			goto exit;			  \
1405d021c344SAndy King 		}					  \
1406d021c344SAndy King 		if (copy_from_user(&_v, optval, sizeof(_v)) != 0) {	\
1407d021c344SAndy King 			err = -EFAULT;					\
1408d021c344SAndy King 			goto exit;					\
1409d021c344SAndy King 		}							\
1410d021c344SAndy King 	} while (0)
1411d021c344SAndy King 
1412d021c344SAndy King 	err = 0;
1413d021c344SAndy King 	sk = sock->sk;
1414d021c344SAndy King 	vsk = vsock_sk(sk);
1415d021c344SAndy King 
1416d021c344SAndy King 	lock_sock(sk);
1417d021c344SAndy King 
1418d021c344SAndy King 	switch (optname) {
1419d021c344SAndy King 	case SO_VM_SOCKETS_BUFFER_SIZE:
1420d021c344SAndy King 		COPY_IN(val);
1421d021c344SAndy King 		transport->set_buffer_size(vsk, val);
1422d021c344SAndy King 		break;
1423d021c344SAndy King 
1424d021c344SAndy King 	case SO_VM_SOCKETS_BUFFER_MAX_SIZE:
1425d021c344SAndy King 		COPY_IN(val);
1426d021c344SAndy King 		transport->set_max_buffer_size(vsk, val);
1427d021c344SAndy King 		break;
1428d021c344SAndy King 
1429d021c344SAndy King 	case SO_VM_SOCKETS_BUFFER_MIN_SIZE:
1430d021c344SAndy King 		COPY_IN(val);
1431d021c344SAndy King 		transport->set_min_buffer_size(vsk, val);
1432d021c344SAndy King 		break;
1433d021c344SAndy King 
1434d021c344SAndy King 	case SO_VM_SOCKETS_CONNECT_TIMEOUT: {
1435d021c344SAndy King 		struct timeval tv;
1436d021c344SAndy King 		COPY_IN(tv);
1437d021c344SAndy King 		if (tv.tv_sec >= 0 && tv.tv_usec < USEC_PER_SEC &&
1438d021c344SAndy King 		    tv.tv_sec < (MAX_SCHEDULE_TIMEOUT / HZ - 1)) {
1439d021c344SAndy King 			vsk->connect_timeout = tv.tv_sec * HZ +
1440d021c344SAndy King 			    DIV_ROUND_UP(tv.tv_usec, (1000000 / HZ));
1441d021c344SAndy King 			if (vsk->connect_timeout == 0)
1442d021c344SAndy King 				vsk->connect_timeout =
1443d021c344SAndy King 				    VSOCK_DEFAULT_CONNECT_TIMEOUT;
1444d021c344SAndy King 
1445d021c344SAndy King 		} else {
1446d021c344SAndy King 			err = -ERANGE;
1447d021c344SAndy King 		}
1448d021c344SAndy King 		break;
1449d021c344SAndy King 	}
1450d021c344SAndy King 
1451d021c344SAndy King 	default:
1452d021c344SAndy King 		err = -ENOPROTOOPT;
1453d021c344SAndy King 		break;
1454d021c344SAndy King 	}
1455d021c344SAndy King 
1456d021c344SAndy King #undef COPY_IN
1457d021c344SAndy King 
1458d021c344SAndy King exit:
1459d021c344SAndy King 	release_sock(sk);
1460d021c344SAndy King 	return err;
1461d021c344SAndy King }
1462d021c344SAndy King 
1463d021c344SAndy King static int vsock_stream_getsockopt(struct socket *sock,
1464d021c344SAndy King 				   int level, int optname,
1465d021c344SAndy King 				   char __user *optval,
1466d021c344SAndy King 				   int __user *optlen)
1467d021c344SAndy King {
1468d021c344SAndy King 	int err;
1469d021c344SAndy King 	int len;
1470d021c344SAndy King 	struct sock *sk;
1471d021c344SAndy King 	struct vsock_sock *vsk;
1472d021c344SAndy King 	u64 val;
1473d021c344SAndy King 
1474d021c344SAndy King 	if (level != AF_VSOCK)
1475d021c344SAndy King 		return -ENOPROTOOPT;
1476d021c344SAndy King 
1477d021c344SAndy King 	err = get_user(len, optlen);
1478d021c344SAndy King 	if (err != 0)
1479d021c344SAndy King 		return err;
1480d021c344SAndy King 
1481d021c344SAndy King #define COPY_OUT(_v)                            \
1482d021c344SAndy King 	do {					\
1483d021c344SAndy King 		if (len < sizeof(_v))		\
1484d021c344SAndy King 			return -EINVAL;		\
1485d021c344SAndy King 						\
1486d021c344SAndy King 		len = sizeof(_v);		\
1487d021c344SAndy King 		if (copy_to_user(optval, &_v, len) != 0)	\
1488d021c344SAndy King 			return -EFAULT;				\
1489d021c344SAndy King 								\
1490d021c344SAndy King 	} while (0)
1491d021c344SAndy King 
1492d021c344SAndy King 	err = 0;
1493d021c344SAndy King 	sk = sock->sk;
1494d021c344SAndy King 	vsk = vsock_sk(sk);
1495d021c344SAndy King 
1496d021c344SAndy King 	switch (optname) {
1497d021c344SAndy King 	case SO_VM_SOCKETS_BUFFER_SIZE:
1498d021c344SAndy King 		val = transport->get_buffer_size(vsk);
1499d021c344SAndy King 		COPY_OUT(val);
1500d021c344SAndy King 		break;
1501d021c344SAndy King 
1502d021c344SAndy King 	case SO_VM_SOCKETS_BUFFER_MAX_SIZE:
1503d021c344SAndy King 		val = transport->get_max_buffer_size(vsk);
1504d021c344SAndy King 		COPY_OUT(val);
1505d021c344SAndy King 		break;
1506d021c344SAndy King 
1507d021c344SAndy King 	case SO_VM_SOCKETS_BUFFER_MIN_SIZE:
1508d021c344SAndy King 		val = transport->get_min_buffer_size(vsk);
1509d021c344SAndy King 		COPY_OUT(val);
1510d021c344SAndy King 		break;
1511d021c344SAndy King 
1512d021c344SAndy King 	case SO_VM_SOCKETS_CONNECT_TIMEOUT: {
1513d021c344SAndy King 		struct timeval tv;
1514d021c344SAndy King 		tv.tv_sec = vsk->connect_timeout / HZ;
1515d021c344SAndy King 		tv.tv_usec =
1516d021c344SAndy King 		    (vsk->connect_timeout -
1517d021c344SAndy King 		     tv.tv_sec * HZ) * (1000000 / HZ);
1518d021c344SAndy King 		COPY_OUT(tv);
1519d021c344SAndy King 		break;
1520d021c344SAndy King 	}
1521d021c344SAndy King 	default:
1522d021c344SAndy King 		return -ENOPROTOOPT;
1523d021c344SAndy King 	}
1524d021c344SAndy King 
1525d021c344SAndy King 	err = put_user(len, optlen);
1526d021c344SAndy King 	if (err != 0)
1527d021c344SAndy King 		return -EFAULT;
1528d021c344SAndy King 
1529d021c344SAndy King #undef COPY_OUT
1530d021c344SAndy King 
1531d021c344SAndy King 	return 0;
1532d021c344SAndy King }
1533d021c344SAndy King 
15341b784140SYing Xue static int vsock_stream_sendmsg(struct socket *sock, struct msghdr *msg,
15351b784140SYing Xue 				size_t len)
1536d021c344SAndy King {
1537d021c344SAndy King 	struct sock *sk;
1538d021c344SAndy King 	struct vsock_sock *vsk;
1539d021c344SAndy King 	ssize_t total_written;
1540d021c344SAndy King 	long timeout;
1541d021c344SAndy King 	int err;
1542d021c344SAndy King 	struct vsock_transport_send_notify_data send_data;
1543d021c344SAndy King 
1544d021c344SAndy King 	DEFINE_WAIT(wait);
1545d021c344SAndy King 
1546d021c344SAndy King 	sk = sock->sk;
1547d021c344SAndy King 	vsk = vsock_sk(sk);
1548d021c344SAndy King 	total_written = 0;
1549d021c344SAndy King 	err = 0;
1550d021c344SAndy King 
1551d021c344SAndy King 	if (msg->msg_flags & MSG_OOB)
1552d021c344SAndy King 		return -EOPNOTSUPP;
1553d021c344SAndy King 
1554d021c344SAndy King 	lock_sock(sk);
1555d021c344SAndy King 
1556d021c344SAndy King 	/* Callers should not provide a destination with stream sockets. */
1557d021c344SAndy King 	if (msg->msg_namelen) {
1558d021c344SAndy King 		err = sk->sk_state == SS_CONNECTED ? -EISCONN : -EOPNOTSUPP;
1559d021c344SAndy King 		goto out;
1560d021c344SAndy King 	}
1561d021c344SAndy King 
1562d021c344SAndy King 	/* Send data only if both sides are not shutdown in the direction. */
1563d021c344SAndy King 	if (sk->sk_shutdown & SEND_SHUTDOWN ||
1564d021c344SAndy King 	    vsk->peer_shutdown & RCV_SHUTDOWN) {
1565d021c344SAndy King 		err = -EPIPE;
1566d021c344SAndy King 		goto out;
1567d021c344SAndy King 	}
1568d021c344SAndy King 
1569d021c344SAndy King 	if (sk->sk_state != SS_CONNECTED ||
1570d021c344SAndy King 	    !vsock_addr_bound(&vsk->local_addr)) {
1571d021c344SAndy King 		err = -ENOTCONN;
1572d021c344SAndy King 		goto out;
1573d021c344SAndy King 	}
1574d021c344SAndy King 
1575d021c344SAndy King 	if (!vsock_addr_bound(&vsk->remote_addr)) {
1576d021c344SAndy King 		err = -EDESTADDRREQ;
1577d021c344SAndy King 		goto out;
1578d021c344SAndy King 	}
1579d021c344SAndy King 
1580d021c344SAndy King 	/* Wait for room in the produce queue to enqueue our user's data. */
1581d021c344SAndy King 	timeout = sock_sndtimeo(sk, msg->msg_flags & MSG_DONTWAIT);
1582d021c344SAndy King 
1583d021c344SAndy King 	err = transport->notify_send_init(vsk, &send_data);
1584d021c344SAndy King 	if (err < 0)
1585d021c344SAndy King 		goto out;
1586d021c344SAndy King 
15876f57e56aSClaudio Imbrenda 
1588d021c344SAndy King 	while (total_written < len) {
1589d021c344SAndy King 		ssize_t written;
1590d021c344SAndy King 
1591f7f9b5e7SClaudio Imbrenda 		prepare_to_wait(sk_sleep(sk), &wait, TASK_INTERRUPTIBLE);
1592d021c344SAndy King 		while (vsock_stream_has_space(vsk) == 0 &&
1593d021c344SAndy King 		       sk->sk_err == 0 &&
1594d021c344SAndy King 		       !(sk->sk_shutdown & SEND_SHUTDOWN) &&
1595d021c344SAndy King 		       !(vsk->peer_shutdown & RCV_SHUTDOWN)) {
1596d021c344SAndy King 
1597d021c344SAndy King 			/* Don't wait for non-blocking sockets. */
1598d021c344SAndy King 			if (timeout == 0) {
1599d021c344SAndy King 				err = -EAGAIN;
1600f7f9b5e7SClaudio Imbrenda 				finish_wait(sk_sleep(sk), &wait);
1601f7f9b5e7SClaudio Imbrenda 				goto out_err;
1602d021c344SAndy King 			}
1603d021c344SAndy King 
1604d021c344SAndy King 			err = transport->notify_send_pre_block(vsk, &send_data);
1605f7f9b5e7SClaudio Imbrenda 			if (err < 0) {
1606f7f9b5e7SClaudio Imbrenda 				finish_wait(sk_sleep(sk), &wait);
1607f7f9b5e7SClaudio Imbrenda 				goto out_err;
1608f7f9b5e7SClaudio Imbrenda 			}
1609d021c344SAndy King 
1610d021c344SAndy King 			release_sock(sk);
1611d021c344SAndy King 			timeout = schedule_timeout(timeout);
1612d021c344SAndy King 			lock_sock(sk);
1613d021c344SAndy King 			if (signal_pending(current)) {
1614d021c344SAndy King 				err = sock_intr_errno(timeout);
1615f7f9b5e7SClaudio Imbrenda 				finish_wait(sk_sleep(sk), &wait);
1616f7f9b5e7SClaudio Imbrenda 				goto out_err;
1617d021c344SAndy King 			} else if (timeout == 0) {
1618d021c344SAndy King 				err = -EAGAIN;
1619f7f9b5e7SClaudio Imbrenda 				finish_wait(sk_sleep(sk), &wait);
1620f7f9b5e7SClaudio Imbrenda 				goto out_err;
1621d021c344SAndy King 			}
1622d021c344SAndy King 
16236f57e56aSClaudio Imbrenda 			prepare_to_wait(sk_sleep(sk), &wait,
16246f57e56aSClaudio Imbrenda 					TASK_INTERRUPTIBLE);
1625d021c344SAndy King 		}
1626f7f9b5e7SClaudio Imbrenda 		finish_wait(sk_sleep(sk), &wait);
1627d021c344SAndy King 
1628d021c344SAndy King 		/* These checks occur both as part of and after the loop
1629d021c344SAndy King 		 * conditional since we need to check before and after
1630d021c344SAndy King 		 * sleeping.
1631d021c344SAndy King 		 */
1632d021c344SAndy King 		if (sk->sk_err) {
1633d021c344SAndy King 			err = -sk->sk_err;
1634f7f9b5e7SClaudio Imbrenda 			goto out_err;
1635d021c344SAndy King 		} else if ((sk->sk_shutdown & SEND_SHUTDOWN) ||
1636d021c344SAndy King 			   (vsk->peer_shutdown & RCV_SHUTDOWN)) {
1637d021c344SAndy King 			err = -EPIPE;
1638f7f9b5e7SClaudio Imbrenda 			goto out_err;
1639d021c344SAndy King 		}
1640d021c344SAndy King 
1641d021c344SAndy King 		err = transport->notify_send_pre_enqueue(vsk, &send_data);
1642d021c344SAndy King 		if (err < 0)
1643f7f9b5e7SClaudio Imbrenda 			goto out_err;
1644d021c344SAndy King 
1645d021c344SAndy King 		/* Note that enqueue will only write as many bytes as are free
1646d021c344SAndy King 		 * in the produce queue, so we don't need to ensure len is
1647d021c344SAndy King 		 * smaller than the queue size.  It is the caller's
1648d021c344SAndy King 		 * responsibility to check how many bytes we were able to send.
1649d021c344SAndy King 		 */
1650d021c344SAndy King 
1651d021c344SAndy King 		written = transport->stream_enqueue(
16520f7db23aSAl Viro 				vsk, msg,
1653d021c344SAndy King 				len - total_written);
1654d021c344SAndy King 		if (written < 0) {
1655d021c344SAndy King 			err = -ENOMEM;
1656f7f9b5e7SClaudio Imbrenda 			goto out_err;
1657d021c344SAndy King 		}
1658d021c344SAndy King 
1659d021c344SAndy King 		total_written += written;
1660d021c344SAndy King 
1661d021c344SAndy King 		err = transport->notify_send_post_enqueue(
1662d021c344SAndy King 				vsk, written, &send_data);
1663d021c344SAndy King 		if (err < 0)
1664f7f9b5e7SClaudio Imbrenda 			goto out_err;
1665d021c344SAndy King 
1666d021c344SAndy King 	}
1667d021c344SAndy King 
1668f7f9b5e7SClaudio Imbrenda out_err:
1669d021c344SAndy King 	if (total_written > 0)
1670d021c344SAndy King 		err = total_written;
1671d021c344SAndy King out:
1672d021c344SAndy King 	release_sock(sk);
1673d021c344SAndy King 	return err;
1674d021c344SAndy King }
1675d021c344SAndy King 
1676d021c344SAndy King 
1677d021c344SAndy King static int
16781b784140SYing Xue vsock_stream_recvmsg(struct socket *sock, struct msghdr *msg, size_t len,
16791b784140SYing Xue 		     int flags)
1680d021c344SAndy King {
1681d021c344SAndy King 	struct sock *sk;
1682d021c344SAndy King 	struct vsock_sock *vsk;
1683d021c344SAndy King 	int err;
1684d021c344SAndy King 	size_t target;
1685d021c344SAndy King 	ssize_t copied;
1686d021c344SAndy King 	long timeout;
1687d021c344SAndy King 	struct vsock_transport_recv_notify_data recv_data;
1688d021c344SAndy King 
1689d021c344SAndy King 	DEFINE_WAIT(wait);
1690d021c344SAndy King 
1691d021c344SAndy King 	sk = sock->sk;
1692d021c344SAndy King 	vsk = vsock_sk(sk);
1693d021c344SAndy King 	err = 0;
1694d021c344SAndy King 
1695d021c344SAndy King 	lock_sock(sk);
1696d021c344SAndy King 
1697d021c344SAndy King 	if (sk->sk_state != SS_CONNECTED) {
1698d021c344SAndy King 		/* Recvmsg is supposed to return 0 if a peer performs an
1699d021c344SAndy King 		 * orderly shutdown. Differentiate between that case and when a
1700d021c344SAndy King 		 * peer has not connected or a local shutdown occured with the
1701d021c344SAndy King 		 * SOCK_DONE flag.
1702d021c344SAndy King 		 */
1703d021c344SAndy King 		if (sock_flag(sk, SOCK_DONE))
1704d021c344SAndy King 			err = 0;
1705d021c344SAndy King 		else
1706d021c344SAndy King 			err = -ENOTCONN;
1707d021c344SAndy King 
1708d021c344SAndy King 		goto out;
1709d021c344SAndy King 	}
1710d021c344SAndy King 
1711d021c344SAndy King 	if (flags & MSG_OOB) {
1712d021c344SAndy King 		err = -EOPNOTSUPP;
1713d021c344SAndy King 		goto out;
1714d021c344SAndy King 	}
1715d021c344SAndy King 
1716d021c344SAndy King 	/* We don't check peer_shutdown flag here since peer may actually shut
1717d021c344SAndy King 	 * down, but there can be data in the queue that a local socket can
1718d021c344SAndy King 	 * receive.
1719d021c344SAndy King 	 */
1720d021c344SAndy King 	if (sk->sk_shutdown & RCV_SHUTDOWN) {
1721d021c344SAndy King 		err = 0;
1722d021c344SAndy King 		goto out;
1723d021c344SAndy King 	}
1724d021c344SAndy King 
1725d021c344SAndy King 	/* It is valid on Linux to pass in a zero-length receive buffer.  This
1726d021c344SAndy King 	 * is not an error.  We may as well bail out now.
1727d021c344SAndy King 	 */
1728d021c344SAndy King 	if (!len) {
1729d021c344SAndy King 		err = 0;
1730d021c344SAndy King 		goto out;
1731d021c344SAndy King 	}
1732d021c344SAndy King 
1733d021c344SAndy King 	/* We must not copy less than target bytes into the user's buffer
1734d021c344SAndy King 	 * before returning successfully, so we wait for the consume queue to
1735d021c344SAndy King 	 * have that much data to consume before dequeueing.  Note that this
1736d021c344SAndy King 	 * makes it impossible to handle cases where target is greater than the
1737d021c344SAndy King 	 * queue size.
1738d021c344SAndy King 	 */
1739d021c344SAndy King 	target = sock_rcvlowat(sk, flags & MSG_WAITALL, len);
1740d021c344SAndy King 	if (target >= transport->stream_rcvhiwat(vsk)) {
1741d021c344SAndy King 		err = -ENOMEM;
1742d021c344SAndy King 		goto out;
1743d021c344SAndy King 	}
1744d021c344SAndy King 	timeout = sock_rcvtimeo(sk, flags & MSG_DONTWAIT);
1745d021c344SAndy King 	copied = 0;
1746d021c344SAndy King 
1747d021c344SAndy King 	err = transport->notify_recv_init(vsk, target, &recv_data);
1748d021c344SAndy King 	if (err < 0)
1749d021c344SAndy King 		goto out;
1750d021c344SAndy King 
1751d021c344SAndy King 
1752d021c344SAndy King 	while (1) {
1753f7f9b5e7SClaudio Imbrenda 		s64 ready;
1754f7f9b5e7SClaudio Imbrenda 
1755f7f9b5e7SClaudio Imbrenda 		prepare_to_wait(sk_sleep(sk), &wait, TASK_INTERRUPTIBLE);
1756f7f9b5e7SClaudio Imbrenda 		ready = vsock_stream_has_data(vsk);
1757f7f9b5e7SClaudio Imbrenda 
1758f7f9b5e7SClaudio Imbrenda 		if (ready == 0) {
1759f7f9b5e7SClaudio Imbrenda 			if (sk->sk_err != 0 ||
1760f7f9b5e7SClaudio Imbrenda 			    (sk->sk_shutdown & RCV_SHUTDOWN) ||
1761f7f9b5e7SClaudio Imbrenda 			    (vsk->peer_shutdown & SEND_SHUTDOWN)) {
1762f7f9b5e7SClaudio Imbrenda 				finish_wait(sk_sleep(sk), &wait);
1763f7f9b5e7SClaudio Imbrenda 				break;
1764f7f9b5e7SClaudio Imbrenda 			}
1765f7f9b5e7SClaudio Imbrenda 			/* Don't wait for non-blocking sockets. */
1766f7f9b5e7SClaudio Imbrenda 			if (timeout == 0) {
1767f7f9b5e7SClaudio Imbrenda 				err = -EAGAIN;
1768f7f9b5e7SClaudio Imbrenda 				finish_wait(sk_sleep(sk), &wait);
1769f7f9b5e7SClaudio Imbrenda 				break;
1770f7f9b5e7SClaudio Imbrenda 			}
1771f7f9b5e7SClaudio Imbrenda 
1772f7f9b5e7SClaudio Imbrenda 			err = transport->notify_recv_pre_block(
1773f7f9b5e7SClaudio Imbrenda 					vsk, target, &recv_data);
1774f7f9b5e7SClaudio Imbrenda 			if (err < 0) {
1775f7f9b5e7SClaudio Imbrenda 				finish_wait(sk_sleep(sk), &wait);
1776f7f9b5e7SClaudio Imbrenda 				break;
1777f7f9b5e7SClaudio Imbrenda 			}
1778f7f9b5e7SClaudio Imbrenda 			release_sock(sk);
1779f7f9b5e7SClaudio Imbrenda 			timeout = schedule_timeout(timeout);
1780f7f9b5e7SClaudio Imbrenda 			lock_sock(sk);
1781f7f9b5e7SClaudio Imbrenda 
1782f7f9b5e7SClaudio Imbrenda 			if (signal_pending(current)) {
1783f7f9b5e7SClaudio Imbrenda 				err = sock_intr_errno(timeout);
1784f7f9b5e7SClaudio Imbrenda 				finish_wait(sk_sleep(sk), &wait);
1785f7f9b5e7SClaudio Imbrenda 				break;
1786f7f9b5e7SClaudio Imbrenda 			} else if (timeout == 0) {
1787f7f9b5e7SClaudio Imbrenda 				err = -EAGAIN;
1788f7f9b5e7SClaudio Imbrenda 				finish_wait(sk_sleep(sk), &wait);
1789f7f9b5e7SClaudio Imbrenda 				break;
1790f7f9b5e7SClaudio Imbrenda 			}
1791f7f9b5e7SClaudio Imbrenda 		} else {
1792f7f9b5e7SClaudio Imbrenda 			ssize_t read;
1793f7f9b5e7SClaudio Imbrenda 
1794f7f9b5e7SClaudio Imbrenda 			finish_wait(sk_sleep(sk), &wait);
1795d021c344SAndy King 
1796d021c344SAndy King 			if (ready < 0) {
1797f7f9b5e7SClaudio Imbrenda 				/* Invalid queue pair content. XXX This should
1798f7f9b5e7SClaudio Imbrenda 				* be changed to a connection reset in a later
1799f7f9b5e7SClaudio Imbrenda 				* change.
1800d021c344SAndy King 				*/
1801d021c344SAndy King 
1802d021c344SAndy King 				err = -ENOMEM;
1803f7f9b5e7SClaudio Imbrenda 				goto out;
1804f7f9b5e7SClaudio Imbrenda 			}
1805d021c344SAndy King 
1806d021c344SAndy King 			err = transport->notify_recv_pre_dequeue(
1807d021c344SAndy King 					vsk, target, &recv_data);
1808d021c344SAndy King 			if (err < 0)
1809d021c344SAndy King 				break;
1810d021c344SAndy King 
1811d021c344SAndy King 			read = transport->stream_dequeue(
18120f7db23aSAl Viro 					vsk, msg,
1813d021c344SAndy King 					len - copied, flags);
1814d021c344SAndy King 			if (read < 0) {
1815d021c344SAndy King 				err = -ENOMEM;
1816d021c344SAndy King 				break;
1817d021c344SAndy King 			}
1818d021c344SAndy King 
1819d021c344SAndy King 			copied += read;
1820d021c344SAndy King 
1821d021c344SAndy King 			err = transport->notify_recv_post_dequeue(
1822d021c344SAndy King 					vsk, target, read,
1823d021c344SAndy King 					!(flags & MSG_PEEK), &recv_data);
1824d021c344SAndy King 			if (err < 0)
1825f7f9b5e7SClaudio Imbrenda 				goto out;
1826d021c344SAndy King 
1827d021c344SAndy King 			if (read >= target || flags & MSG_PEEK)
1828d021c344SAndy King 				break;
1829d021c344SAndy King 
1830d021c344SAndy King 			target -= read;
1831d021c344SAndy King 		}
1832d021c344SAndy King 	}
1833d021c344SAndy King 
1834d021c344SAndy King 	if (sk->sk_err)
1835d021c344SAndy King 		err = -sk->sk_err;
1836d021c344SAndy King 	else if (sk->sk_shutdown & RCV_SHUTDOWN)
1837d021c344SAndy King 		err = 0;
1838d021c344SAndy King 
1839dedc58e0SIan Campbell 	if (copied > 0)
1840d021c344SAndy King 		err = copied;
1841d021c344SAndy King 
1842d021c344SAndy King out:
1843d021c344SAndy King 	release_sock(sk);
1844d021c344SAndy King 	return err;
1845d021c344SAndy King }
1846d021c344SAndy King 
1847d021c344SAndy King static const struct proto_ops vsock_stream_ops = {
1848d021c344SAndy King 	.family = PF_VSOCK,
1849d021c344SAndy King 	.owner = THIS_MODULE,
1850d021c344SAndy King 	.release = vsock_release,
1851d021c344SAndy King 	.bind = vsock_bind,
1852d021c344SAndy King 	.connect = vsock_stream_connect,
1853d021c344SAndy King 	.socketpair = sock_no_socketpair,
1854d021c344SAndy King 	.accept = vsock_accept,
1855d021c344SAndy King 	.getname = vsock_getname,
1856d021c344SAndy King 	.poll = vsock_poll,
1857d021c344SAndy King 	.ioctl = sock_no_ioctl,
1858d021c344SAndy King 	.listen = vsock_listen,
1859d021c344SAndy King 	.shutdown = vsock_shutdown,
1860d021c344SAndy King 	.setsockopt = vsock_stream_setsockopt,
1861d021c344SAndy King 	.getsockopt = vsock_stream_getsockopt,
1862d021c344SAndy King 	.sendmsg = vsock_stream_sendmsg,
1863d021c344SAndy King 	.recvmsg = vsock_stream_recvmsg,
1864d021c344SAndy King 	.mmap = sock_no_mmap,
1865d021c344SAndy King 	.sendpage = sock_no_sendpage,
1866d021c344SAndy King };
1867d021c344SAndy King 
1868d021c344SAndy King static int vsock_create(struct net *net, struct socket *sock,
1869d021c344SAndy King 			int protocol, int kern)
1870d021c344SAndy King {
1871d021c344SAndy King 	if (!sock)
1872d021c344SAndy King 		return -EINVAL;
1873d021c344SAndy King 
18746cf1c5fcSAndy King 	if (protocol && protocol != PF_VSOCK)
1875d021c344SAndy King 		return -EPROTONOSUPPORT;
1876d021c344SAndy King 
1877d021c344SAndy King 	switch (sock->type) {
1878d021c344SAndy King 	case SOCK_DGRAM:
1879d021c344SAndy King 		sock->ops = &vsock_dgram_ops;
1880d021c344SAndy King 		break;
1881d021c344SAndy King 	case SOCK_STREAM:
1882d021c344SAndy King 		sock->ops = &vsock_stream_ops;
1883d021c344SAndy King 		break;
1884d021c344SAndy King 	default:
1885d021c344SAndy King 		return -ESOCKTNOSUPPORT;
1886d021c344SAndy King 	}
1887d021c344SAndy King 
1888d021c344SAndy King 	sock->state = SS_UNCONNECTED;
1889d021c344SAndy King 
189011aa9c28SEric W. Biederman 	return __vsock_create(net, sock, NULL, GFP_KERNEL, 0, kern) ? 0 : -ENOMEM;
1891d021c344SAndy King }
1892d021c344SAndy King 
1893d021c344SAndy King static const struct net_proto_family vsock_family_ops = {
1894d021c344SAndy King 	.family = AF_VSOCK,
1895d021c344SAndy King 	.create = vsock_create,
1896d021c344SAndy King 	.owner = THIS_MODULE,
1897d021c344SAndy King };
1898d021c344SAndy King 
1899d021c344SAndy King static long vsock_dev_do_ioctl(struct file *filp,
1900d021c344SAndy King 			       unsigned int cmd, void __user *ptr)
1901d021c344SAndy King {
1902d021c344SAndy King 	u32 __user *p = ptr;
1903d021c344SAndy King 	int retval = 0;
1904d021c344SAndy King 
1905d021c344SAndy King 	switch (cmd) {
1906d021c344SAndy King 	case IOCTL_VM_SOCKETS_GET_LOCAL_CID:
1907d021c344SAndy King 		if (put_user(transport->get_local_cid(), p) != 0)
1908d021c344SAndy King 			retval = -EFAULT;
1909d021c344SAndy King 		break;
1910d021c344SAndy King 
1911d021c344SAndy King 	default:
1912d021c344SAndy King 		pr_err("Unknown ioctl %d\n", cmd);
1913d021c344SAndy King 		retval = -EINVAL;
1914d021c344SAndy King 	}
1915d021c344SAndy King 
1916d021c344SAndy King 	return retval;
1917d021c344SAndy King }
1918d021c344SAndy King 
1919d021c344SAndy King static long vsock_dev_ioctl(struct file *filp,
1920d021c344SAndy King 			    unsigned int cmd, unsigned long arg)
1921d021c344SAndy King {
1922d021c344SAndy King 	return vsock_dev_do_ioctl(filp, cmd, (void __user *)arg);
1923d021c344SAndy King }
1924d021c344SAndy King 
1925d021c344SAndy King #ifdef CONFIG_COMPAT
1926d021c344SAndy King static long vsock_dev_compat_ioctl(struct file *filp,
1927d021c344SAndy King 				   unsigned int cmd, unsigned long arg)
1928d021c344SAndy King {
1929d021c344SAndy King 	return vsock_dev_do_ioctl(filp, cmd, compat_ptr(arg));
1930d021c344SAndy King }
1931d021c344SAndy King #endif
1932d021c344SAndy King 
1933d021c344SAndy King static const struct file_operations vsock_device_ops = {
1934d021c344SAndy King 	.owner		= THIS_MODULE,
1935d021c344SAndy King 	.unlocked_ioctl	= vsock_dev_ioctl,
1936d021c344SAndy King #ifdef CONFIG_COMPAT
1937d021c344SAndy King 	.compat_ioctl	= vsock_dev_compat_ioctl,
1938d021c344SAndy King #endif
1939d021c344SAndy King 	.open		= nonseekable_open,
1940d021c344SAndy King };
1941d021c344SAndy King 
1942d021c344SAndy King static struct miscdevice vsock_device = {
1943d021c344SAndy King 	.name		= "vsock",
1944d021c344SAndy King 	.fops		= &vsock_device_ops,
1945d021c344SAndy King };
1946d021c344SAndy King 
19472c4a336eSAndy King int __vsock_core_init(const struct vsock_transport *t, struct module *owner)
1948d021c344SAndy King {
19492c4a336eSAndy King 	int err = mutex_lock_interruptible(&vsock_register_mutex);
19502c4a336eSAndy King 
19512c4a336eSAndy King 	if (err)
19522c4a336eSAndy King 		return err;
19532c4a336eSAndy King 
19542c4a336eSAndy King 	if (transport) {
19552c4a336eSAndy King 		err = -EBUSY;
19562c4a336eSAndy King 		goto err_busy;
19572c4a336eSAndy King 	}
19582c4a336eSAndy King 
19592c4a336eSAndy King 	/* Transport must be the owner of the protocol so that it can't
19602c4a336eSAndy King 	 * unload while there are open sockets.
19612c4a336eSAndy King 	 */
19622c4a336eSAndy King 	vsock_proto.owner = owner;
19632c4a336eSAndy King 	transport = t;
1964d021c344SAndy King 
1965d021c344SAndy King 	vsock_init_tables();
1966d021c344SAndy King 
19676ad0b2f7SAsias He 	vsock_device.minor = MISC_DYNAMIC_MINOR;
1968d021c344SAndy King 	err = misc_register(&vsock_device);
1969d021c344SAndy King 	if (err) {
1970d021c344SAndy King 		pr_err("Failed to register misc device\n");
1971f6a835bbSGao feng 		goto err_reset_transport;
1972d021c344SAndy King 	}
1973d021c344SAndy King 
1974d021c344SAndy King 	err = proto_register(&vsock_proto, 1);	/* we want our slab */
1975d021c344SAndy King 	if (err) {
1976d021c344SAndy King 		pr_err("Cannot register vsock protocol\n");
1977f6a835bbSGao feng 		goto err_deregister_misc;
1978d021c344SAndy King 	}
1979d021c344SAndy King 
1980d021c344SAndy King 	err = sock_register(&vsock_family_ops);
1981d021c344SAndy King 	if (err) {
1982d021c344SAndy King 		pr_err("could not register af_vsock (%d) address family: %d\n",
1983d021c344SAndy King 		       AF_VSOCK, err);
1984d021c344SAndy King 		goto err_unregister_proto;
1985d021c344SAndy King 	}
1986d021c344SAndy King 
19872c4a336eSAndy King 	mutex_unlock(&vsock_register_mutex);
1988d021c344SAndy King 	return 0;
1989d021c344SAndy King 
1990d021c344SAndy King err_unregister_proto:
1991d021c344SAndy King 	proto_unregister(&vsock_proto);
1992f6a835bbSGao feng err_deregister_misc:
1993d021c344SAndy King 	misc_deregister(&vsock_device);
1994f6a835bbSGao feng err_reset_transport:
19952c4a336eSAndy King 	transport = NULL;
19962c4a336eSAndy King err_busy:
19972c4a336eSAndy King 	mutex_unlock(&vsock_register_mutex);
1998d021c344SAndy King 	return err;
1999d021c344SAndy King }
20002c4a336eSAndy King EXPORT_SYMBOL_GPL(__vsock_core_init);
2001d021c344SAndy King 
2002d021c344SAndy King void vsock_core_exit(void)
2003d021c344SAndy King {
2004d021c344SAndy King 	mutex_lock(&vsock_register_mutex);
2005d021c344SAndy King 
2006d021c344SAndy King 	misc_deregister(&vsock_device);
2007d021c344SAndy King 	sock_unregister(AF_VSOCK);
2008d021c344SAndy King 	proto_unregister(&vsock_proto);
2009d021c344SAndy King 
2010d021c344SAndy King 	/* We do not want the assignment below re-ordered. */
2011d021c344SAndy King 	mb();
2012d021c344SAndy King 	transport = NULL;
2013d021c344SAndy King 
2014d021c344SAndy King 	mutex_unlock(&vsock_register_mutex);
2015d021c344SAndy King }
2016d021c344SAndy King EXPORT_SYMBOL_GPL(vsock_core_exit);
2017d021c344SAndy King 
20180b01aeb3SStefan Hajnoczi const struct vsock_transport *vsock_core_get_transport(void)
20190b01aeb3SStefan Hajnoczi {
20200b01aeb3SStefan Hajnoczi 	/* vsock_register_mutex not taken since only the transport uses this
20210b01aeb3SStefan Hajnoczi 	 * function and only while registered.
20220b01aeb3SStefan Hajnoczi 	 */
20230b01aeb3SStefan Hajnoczi 	return transport;
20240b01aeb3SStefan Hajnoczi }
20250b01aeb3SStefan Hajnoczi EXPORT_SYMBOL_GPL(vsock_core_get_transport);
20260b01aeb3SStefan Hajnoczi 
2027d021c344SAndy King MODULE_AUTHOR("VMware, Inc.");
2028d021c344SAndy King MODULE_DESCRIPTION("VMware Virtual Socket Family");
20291190cfdbSJorgen Hansen MODULE_VERSION("1.0.2.0-k");
2030d021c344SAndy King MODULE_LICENSE("GPL v2");
2031